Product Description
We are an air compressor manufacturer, in order to save your purchasing time!
Please provide voltage, working pressure, air flow rate, or compressor power,
I will provide you with a quote more quickly.
Product Description
| horsepower | power | flow | noise | Working pressure |
| 10HP | 7.5kw | 0.4-1.1m³/min | 62 | 8-12.5bar |
| 15HP | 11KW | 0.6-1.8m³/min | 62 | 8-12.5bar |
| 20HP | 15KW | 0.8-2.4lm³/min | 62 | 8-12.5bar |
| 30HP | 22KW | 1.2-3.5lm³/min | 65 | 8-12.5bar |
| 40HP | 30kw | 1.7-5.0m³/min | 65 | 8-12.5bar |
| 50HP | 37KW | 2.2-6.5m³/min | 68 | 8-12.5bar |
| 60HP | 45KW | 2.7-7.1lm³/min | 68 | 8-12.5bar |
| 75HP | 55KW | 3.2-9.3lm³/min | 75 | 8-12.5bar |
| 100HP | 75KW | 4.2-12.7lm³/min | 75 | 8-12.5bar |
| 120HP | 90KW | 5.2-15.4lm³/min | 75 | 8-12.5bar |
Transaction process
Product Parameters
Production Process
Company Profile
About us
Located in Xihu (West Lake) Dis. County, HangZhou City, ZheJiang Province, ZheJiang Sanjianke Gas Technology Co., Ltd. boasts a production workshop spHangZhou over 32,000 square meters. It is a leading intelligent manufacturer specializing in the R&D, production, sales, and maintenance of air power system equipment, including screw compressors, refrigerated air dryers, desiccant air dryers, vacuum pumps, and high-precision filters.
Driven by its robust financial backing and technological prowess, the company has achieved international advancement in its R&D and manufacturing capabilities, ensuring that its product quality aligns with the world’s top standards, keeping pace with the European and American markets. The company is dedicated to providing every enterprise with a premium, energy-efficient, and stable compressed air experience.
Packaging & Shipping
FAQ
Q1: Are you a factory or a trading company?
A1: Our factory is a manufacturer of various screw type air compressors, with over 20 years of experience in air compressor research and development and production.
Q2: What is the exact address of your factory?
A2: Our main road in Shipai Industrial Zone, Xihu (West Lake) Dis. County, HangZhou City, ZheJiang Province (which is our boss’s hometown)
Q3: Warranty terms for 7.5kw screw air compressor?
A3: The machine comes with a one-year warranty and technical support is provided according to your needs.
Q4: Can you provide some spare parts for screw air compressors?
A4: Of course. We can provide all the spare parts for the machine
Q5: How long will you spend arranging the production of this permanent magnet screw compressor?
A5: We can deliver within 10 days. We will deliver other electricity or other colors within 14-18 days
Q6: Can you accept OEM orders?
A6: Yes, there is a professional design
Q7: How long can your air compressor last?
A7: Our machine can be used for more than 15 years
Q8: Can you provide air dryers, air filters, and air storage tanks?
A8: Yes, we can provide air dryers, air filters, and air storage tanks, etc
Q9: How is the product packaging?
A9: We strictly package our products in standard seaworthy boxes.
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What are the advantages of using rotary vane compressors?
Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:
1. Compact and Lightweight:
Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.
2. High Efficiency:
Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.
3. Quiet Operation:
Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.
4. Oil Lubrication:
Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.
5. Versatile Applications:
Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.
6. Easy Maintenance:
Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.
These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.
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What are the environmental considerations when using air compressors?
When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:
Energy Efficiency:
Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.
Air Leakage:
Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.
Noise Pollution:
Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.
Emissions:
While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.
Proper Waste Management:
Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.
Sustainable Practices:
Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.
By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.
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In which industries are air compressors widely used?
Air compressors find extensive usage across various industries due to their versatility and ability to generate compressed air. Here are some industries where air compressors are widely employed:
1. Manufacturing: Air compressors are essential in manufacturing processes for powering pneumatic tools and equipment. They are used for tasks such as operating assembly lines, powering robotic machinery, running paint sprayers, and driving pneumatic actuators.
2. Construction: Air compressors play a crucial role in the construction industry. They power pneumatic tools like jackhammers, nail guns, impact wrenches, and concrete breakers. Compressed air is also used for concrete spraying, sandblasting, and operating air-powered lifts and hoists.
3. Automotive: Air compressors are widely used in automotive manufacturing and repair. They power air tools used in auto body shops, tire inflation equipment, pneumatic lifts, and air-operated brake systems. Compressed air is also utilized in vehicle painting and drying processes.
4. Oil and Gas: The oil and gas industry extensively relies on air compressors for various applications. They are used for pneumatic drilling, powering pneumatic tools in refineries and petrochemical plants, operating pneumatic valves and actuators, and providing instrument air for control systems.
5. Food and Beverage: Air compressors are employed in the food and beverage industry for tasks such as packaging, bottling, and sealing. They power pneumatic conveying systems, control air pressure in food processing equipment, and provide clean compressed air for food handling and storage.
6. Pharmaceutical and Healthcare: Air compressors find application in pharmaceutical manufacturing and healthcare facilities. They are used for operating medical equipment, such as ventilators and dental tools. Compressed air is also utilized in pharmaceutical processes, including tablet coating, fluid bed drying, and aseptic packaging.
7. Aerospace: The aerospace industry relies on air compressors for various applications, including aircraft maintenance and assembly. They power pneumatic tools for aircraft repair, provide compressed air for cleaning and pressurizing systems, and support ground operations, such as tire inflation and aircraft de-icing.
8. Mining: Air compressors are extensively used in the mining industry. They power pneumatic tools for drilling, rock blasting, and excavation. Compressed air is also utilized for ventilation, conveying materials, and operating underground equipment.
9. Energy and Utilities: Air compressors play a vital role in the energy and utilities sector. They are used in power generation plants for pneumatic control systems, instrument air, and operating pneumatic valves. Compressed air is also employed for cleaning and maintenance purposes.
These are just a few examples of the industries where air compressors are widely utilized. The versatility and reliability of air compressors make them indispensable in numerous applications across diverse sectors.


editor by lmc 2025-02-25
China manufacturer 360psi 33m3 diesel engine mobile power screw air compressor with Good quality
Product Description
PRODUCT HIGHLIGHTS
1.The brand power,reliable quality, stable performance.The harsh thermal equilibrium serviceability can guarantee that the machine work effectively under high temperature environment (≤40ºC).
2.Unique patent design, light load startup system, the air control design is adapt to the drilling work with high stability.
3.Efficient cooling system, divided into 3 parts: water- cooled ,mid- cold, oil cold, which ensure the reliable operation of diesel engine, and it’s suitable for high temperature working environment.
4.Independent research and development of the opposite door design, rational layout, which is easy to do regular maintenace ,with advantages of the fixed and portable compressor.
5.A single point lifting, forklift hole device, equipped with drag ring.It is suitable for repair car transport, easy to transfer and installation of the unit.
6.Waterproof and dustproof design, which is suitable for outdoor hard working environment.
7.According to customer requirements, the heating boiler and remote components is available for cold starting.
BRAND CONFIGURATION
Highly Effective Two-stage Compression Screw Airend
High efficiency 2 stage compression engine, with super long bearing life, high reliable sealing performance, produced product quality and manufacturing precision.The long-term market test has established a good
reputation among the global users.
Long operating life Low maintenance cost
High efficiency, little leakage triangle, low specific power
Less wear parts Little vibration, low noise
Name Brand Power
International name brand diesel engine Low fuel consumption and good fuel economy
Compact structure is easy to be maintained Super power,green and enviromental protection
Xihu (West Lake) Dis.nized Control System
German brand VDO instrument Clear contact surface ,easy operation
High performance, brand guarantee Ultra strong sensitivity
Air System- Over Loading Air Filter
United States brand reloading air filtration, cyclone filtration and adsorption filtration, double filtration effect
Dust removal ≥99.9%,filtering fineness ≤3μm
Ensuring the airend to be effectively dustproof and the quality of the air.
Application fields
Comps two-stage compression diesel fixed screw air compressor is widely used in
Our Exhibition
1.Pre-sale service:
Act as a good adviser and assistant of clients enable them to get rich and generous returns on their investments . 1.Select equipment model. 2.Design and manufacture products according to client’s special requirement ; 3.Train technical personnel for clients .
2.Services during the sale:
1.Pre-check and accept products ahead of delivery .
2. Help clients to draft solving plans .
3.After-sale services:
Provide considerate services to minimize clients’ worries.
1.Complete After-sales service,professional engineers available to service machinery at home or oversea.
2. 24 hours technical support by e-mail.
3.Other essential technological service. /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| After-sales Service: | 12 months |
|---|---|
| Warranty: | 12 months |
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Power Source: | Diesel Engine |
| Cylinder Position: | Vertical |
| Customization: |
Available
|
|
|---|
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How are air compressors employed in the petrochemical industry?
Air compressors play a vital role in the petrochemical industry, where they are employed for various applications that require compressed air. The petrochemical industry encompasses the production of chemicals and products derived from petroleum and natural gas. Here’s an overview of how air compressors are utilized in the petrochemical industry:
1. Instrumentation and Control Systems:
Air compressors are used to power pneumatic instrumentation and control systems in petrochemical plants. These systems rely on compressed air to operate control valves, actuators, and other pneumatic devices that regulate processes such as flow control, pressure control, and temperature control. Compressed air provides a reliable and clean source of energy for these critical control mechanisms.
2. Pneumatic Tools and Equipment:
Petrochemical plants often utilize pneumatic tools and equipment for various tasks such as maintenance, repair, and construction activities. Air compressors supply the necessary compressed air to power these tools, including pneumatic drills, impact wrenches, grinders, sanders, and painting equipment. The versatility and convenience of compressed air make it an ideal energy source for a wide range of pneumatic tools used in the industry.
3. Process Air and Gas Supply:
Petrochemical processes often require a supply of compressed air and gases for specific applications. Air compressors are employed to generate compressed air for processes such as oxidation, combustion, and aeration. They may also be used to compress gases like nitrogen, hydrogen, and oxygen, which are utilized in various petrochemical reactions and treatment processes.
4. Cooling and Ventilation:
Petrochemical plants require adequate cooling and ventilation systems to maintain optimal operating conditions and ensure the safety of personnel. Air compressors are used to power cooling fans, blowers, and air circulation systems that help maintain the desired temperature, remove heat generated by equipment, and provide ventilation in critical areas.
5. Nitrogen Generation:
Nitrogen is widely used in the petrochemical industry for applications such as blanketing, purging, and inerting. Air compressors are utilized in nitrogen generation systems, where they compress atmospheric air, which is then passed through a nitrogen separation process to produce high-purity nitrogen gas. This nitrogen is used for various purposes, including preventing the formation of explosive mixtures, protecting sensitive equipment, and maintaining the integrity of stored products.
6. Instrument Air:
Instrument air is essential for operating pneumatic instruments, analyzers, and control devices throughout the petrochemical plant. Air compressors supply compressed air that is treated and conditioned to meet the stringent requirements of instrument air quality standards. Instrument air is used for tasks such as pneumatic conveying, pneumatic actuators, and calibration of instruments.
By employing air compressors in the petrochemical industry, operators can ensure reliable and efficient operation of pneumatic systems, power various tools and equipment, support critical processes, and maintain safe and controlled environments.
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Are there differences between single-stage and two-stage air compressors?
Yes, there are differences between single-stage and two-stage air compressors. Here’s an in-depth explanation of their distinctions:
Compression Stages:
The primary difference between single-stage and two-stage air compressors lies in the number of compression stages they have. A single-stage compressor has only one compression stage, while a two-stage compressor has two sequential compression stages.
Compression Process:
In a single-stage compressor, the entire compression process occurs in a single cylinder. The air is drawn into the cylinder, compressed in a single stroke, and then discharged. On the other hand, a two-stage compressor utilizes two cylinders or chambers. In the first stage, air is compressed to an intermediate pressure in the first cylinder. Then, the partially compressed air is sent to the second cylinder where it undergoes further compression to reach the desired final pressure.
Pressure Output:
The number of compression stages directly affects the pressure output of the air compressor. Single-stage compressors typically provide lower maximum pressure levels compared to two-stage compressors. Single-stage compressors are suitable for applications that require moderate to low air pressure, while two-stage compressors are capable of delivering higher pressures, making them suitable for demanding applications that require greater air pressure.
Efficiency:
Two-stage compressors generally offer higher efficiency compared to single-stage compressors. The two-stage compression process allows for better heat dissipation between stages, reducing the chances of overheating and improving overall efficiency. Additionally, the two-stage design allows the compressor to achieve higher compression ratios while minimizing the work done by each stage, resulting in improved energy efficiency.
Intercooling:
Intercooling is a feature specific to two-stage compressors. Intercoolers are heat exchangers placed between the first and second compression stages. They cool down the partially compressed air before it enters the second stage, reducing the temperature and improving compression efficiency. The intercooling process helps to minimize heat buildup and reduces the potential for moisture condensation within the compressor system.
Applications:
The choice between a single-stage and two-stage compressor depends on the intended application. Single-stage compressors are commonly used for light-duty applications such as powering pneumatic tools, small-scale workshops, and DIY projects. Two-stage compressors are more suitable for heavy-duty applications that require higher pressures, such as industrial manufacturing, automotive service, and large-scale construction.
It is important to consider the specific requirements of the application, including required pressure levels, duty cycle, and anticipated air demand, when selecting between a single-stage and two-stage air compressor.
In summary, the main differences between single-stage and two-stage air compressors lie in the number of compression stages, pressure output, efficiency, intercooling capability, and application suitability.
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What is the role of air compressor tanks?
Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions:
1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air.
2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment.
3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation.
4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air.
5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor.
6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow.
Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.


editor by CX 2024-02-23
China factory 37kw 55kw 75kw 132kw Variable Speed Rotary Screw Air Compressor manufacturer
Product Description
| SPECIFICATION | ||||||||
| Model |
Pressure MPa |
Flow rate m³/min |
Power Kw/HP |
Noise dB(A) |
Cooling capacity T/H |
Oiling L |
Outlet Dia G |
Weight Kg |
|
BW-8WA BW-8WW |
0.8 | 1.05 | 7.5/10 | 57 | 2 | 10 | 3/4 | 360 |
| 1.0 | 0.8 | |||||||
|
BW-11WA BW-11WW |
0.8 | 1.72 | 11/15 | 60 | 2.5 | 26 | 1 | 420 |
| 1.0 | 1.42 | |||||||
|
BW-15WA BW-15WW |
0.8 | 2.25 | 15/20 | 60 | 3.5 | 26 | 1 | 520 |
| 1.0 | 1.92 | |||||||
|
BW-18WA BW-18WW |
0.8 | 3.0 | 18.5/25 | 63 | 4 | 30 | 1 | 670 |
| 1.1 | 2.2 | |||||||
|
BW-22WA BW-22WW |
0.8 | 3.65 | 22/30 | 63 | 5 | 30 | 1 | 690 |
| 1.0 | 3.0 | |||||||
|
BW-30WA BW-30WW |
0.8 | 5.0 | 30/40 | 66 | 7 | 40 | 11/2 | 840 |
| 1.0 | 3.9 | |||||||
|
BW-37WA BW-37WW |
0.8 | 6.3 | 37/50 | 66 | 9 | 40 | 11/2 | 960 |
| 1.0 | 5.33 | |||||||
|
BW-45WA BW-45WW |
0.8 | 7.8 | 45/60 | 68 | 10 | 90 | 11/2 | 1080 |
| 1.0 | 6.3 | |||||||
|
BW-55WA BW-55WW |
0.8 | 10.1 | 55/75 | 69 | 12 | 100 | 11/2 | 1180 |
| 1.0 | 7.9 | |||||||
1,Are you manufacturer?
BW: Yes, we are professional air compressor manufacturer over 15 years and our factory is located in ZheJiang .
2,How long is your air compressor warranty?
BW: Air end for 2 years,other for 1 year.
3,Do you provide After- sales service parts?
BW: Of course, We could provide easy- consumable spares.
4,How long could your air compressor be used?
BW: Generally, more than 20 years.
5,How about your price?
BW: Based on high quality, Our price is very competitive in this market all over the world.
6,How about your customer service?
BW: For email, we could reply our customers’ emails within 2 hours.
7,Do you support OEM?
BW: YES, and we also provide multiple models to select. How to get quicker quotation?When you send us inquiry, please confirm
Below information at the same time:
* What is the air displacement (m3/min,cfm/min)?
* What is the air pressure (mpa,bar,psi)?
* What is the voltage in your factory (v/p/Hz)?
* It is ok if you need air tank, air dryer and filters.
This information is helpful for us to check suitable equipment solution and quotation quickly
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| After-sales Service: | 1 Year |
|---|---|
| Warranty: | 1 Year |
| Lubrication Style: | Oil-free |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Vertical |
| Customization: |
Available
|
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|---|
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How does variable speed drive technology improve air compressor efficiency?
Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:
1. Matching Air Demand:
Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.
2. Reduced Unloaded Running Time:
Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.
3. Soft Starting:
Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.
4. Energy Savings at Partial Load:
In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.
5. Elimination of On/Off Cycling:
Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.
6. Enhanced System Control:
VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.
By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.
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How do you maintain proper air quality in compressed air systems?
Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:
1. Air Filtration:
Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.
2. Moisture Control:
Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.
3. Oil Removal:
If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.
4. Regular Maintenance:
Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.
5. Air Receiver Tank Maintenance:
Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.
6. Air Quality Testing:
Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.
7. Education and Training:
Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.
8. Documentation and Record-Keeping:
Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.
By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.
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How do oil-lubricated and oil-free air compressors differ?
Oil-lubricated and oil-free air compressors differ in terms of their lubrication systems and the presence of oil in their operation. Here are the key differences:
Oil-Lubricated Air Compressors:
1. Lubrication: Oil-lubricated air compressors use oil for lubricating the moving parts, such as pistons, cylinders, and bearings. The oil forms a protective film that reduces friction and wear, enhancing the compressor’s efficiency and lifespan.
2. Performance: Oil-lubricated compressors are known for their smooth and quiet operation. The oil lubrication helps reduce noise levels and vibration, resulting in a more comfortable working environment.
3. Maintenance: These compressors require regular oil changes and maintenance to ensure the proper functioning of the lubrication system. The oil filter may need replacement, and the oil level should be regularly checked and topped up.
4. Applications: Oil-lubricated compressors are commonly used in applications that demand high air quality and continuous operation, such as industrial settings, workshops, and manufacturing facilities.
Oil-Free Air Compressors:
1. Lubrication: Oil-free air compressors do not use oil for lubrication. Instead, they utilize alternative materials, such as specialized coatings, self-lubricating materials, or water-based lubricants, to reduce friction and wear.
2. Performance: Oil-free compressors generally have a higher airflow capacity, making them suitable for applications where a large volume of compressed air is required. However, they may produce slightly more noise and vibration compared to oil-lubricated compressors.
3. Maintenance: Oil-free compressors typically require less maintenance compared to oil-lubricated ones. They do not need regular oil changes or oil filter replacements. However, it is still important to perform routine maintenance tasks such as air filter cleaning or replacement.
4. Applications: Oil-free compressors are commonly used in applications where air quality is crucial, such as medical and dental facilities, laboratories, electronics manufacturing, and painting applications. They are also favored for portable and consumer-grade compressors.
When selecting between oil-lubricated and oil-free air compressors, consider the specific requirements of your application, including air quality, noise levels, maintenance needs, and expected usage. It’s important to follow the manufacturer’s recommendations for maintenance and lubrication to ensure the optimal performance and longevity of the air compressor.


editor by CX 2024-02-15
China manufacturer Energy Saving Direct Screw Air Compressor with Hot selling
Product Description
0.5-80 M3/Min 6-40 Bar 5.5-400 Kw Electrical Stationary Industrial AC Power Direct Driven/Coupled Rotary Screw Air Compressors Advantages
1.DENAIR Enhanced energy saving screw air compressor reached the super energy saving level
2.Energy Efficient Index 1(EEI 1) approved according to GB19153-2009, the energy consumption is 10%~15% lower than EEI 2.
3.CHINAMFG air compressor design with 72 types of technology patent, real bigger air flow
4.State-of-the-art screw element, original Germany CHINAMFG air end, ladvanced SAP profile design, superior Sweden CHINAMFG element bearings
5.CHINAMFG air compressdor dopts world-renowned components, such as Schneider electronics from France, DENAIR filters from Germany, Danfoss pressure sensor from Denmark, etc. contribute to guarantee the compressor longer service life.
6.Smart touch screen design and 0 pressure drop design
7.Higher efficiency cooling system and electrical motor
8.Stainless steel pipes, reasonable inner design, ensure long service life without maintenance.
Technical Parameters Of Energy Saving Rotary Screw Air Compressor
| Model | Maxinmum working | Capacity(FAD)* | Installed motor power | Driving mode& | Noise | Dimensions(mm) | Weight | Air outlet | |||||||
| pressure | 50 HZ | 60 HZ | Cooling method | level** | pipe diameter | ||||||||||
| bar(g) | psig | m3/min | cfm | m3/min | cfm | kw | hp | dB(A) | L | W | H | kg | |||
| DA-5 | 7.5 | 109 | 0.80 | 28 | 0.80 | 28 | 5.5 | 7.5 | Belt Driven | 75 | 900 | 600 | 860 | 315 | G3/4″ |
| 8.5 | 123 | 0.78 | 28 | 0.78 | 28 | 5.5 | 7.5 | Air Cooling | 75 | 900 | 600 | 860 | |||
| DA-7 | 7.5 | 109 | 1.09 | 39 | 1.09 | 39 | 7.5 | 10 | 75 | 900 | 600 | 860 | 315 | G3/4″ | |
| 8.5 | 123 | 1.07 | 38 | 1.07 | 38 | 7.5 | 10 | 75 | 900 | 600 | 860 | ||||
| 10.5 | 152 | 0.92 | 32 | 0.91 | 32 | 7.5 | 10 | 75 | 900 | 600 | 860 | ||||
| 13.0 | 189 | 0.73 | 26 | 0.72 | 26 | 7.5 | 10 | 75 | 900 | 600 | 860 | ||||
| DA-11 | 7.5 | 109 | 1.66 | 59 | 1.66 | 59 | 11 | 15 | 75 | 1230 | 650 | 900 | 324 | G3/4″ | |
| 8.5 | 123 | 1.64 | 58 | 1.64 | 58 | 11 | 15 | 75 | 1230 | 650 | 900 | ||||
| 10.5 | 152 | 1.45 | 51 | 1.45 | 51 | 11 | 15 | 75 | 1230 | 650 | 900 | ||||
| 13.0 | 189 | 1.13 | 40 | 1.12 | 40 | 11 | 15 | 75 | 1230 | 650 | 900 | ||||
| DA-15 | 7.5 | 109 | 2.54 | 90 | 2.53 | 89 | 15 | 20 | Direct Driven | 75 | 1465 | 990 | 1345 | 453 | G1-1/4″ |
| 8.5 | 123 | 2.51 | 88 | 2.50 | 88 | 15 | 20 | Air Cooling | 75 | 1465 | 990 | 1345 | |||
| 10.5 | 152 | 1.97 | 70 | 1.86 | 66 | 15 | 20 | 75 | 1465 | 990 | 1345 | ||||
| 13.0 | 189 | 1.91 | 67 | 1.83 | 65 | 15 | 20 | 75 | 1465 | 990 | 1345 | ||||
| DA-18 | 7.5 | 109 | 3.04 | 107 | 3.65 | 129 | 18.5 | 25 | 75 | 1465 | 990 | 1345 | 453 | G1-1/4″ | |
| 8.5 | 123 | 3.03 | 107 | 3.63 | 128 | 18.5 | 25 | 75 | 1465 | 990 | 1345 | ||||
| 10.5 | 152 | 3.00 | 106 | 2.38 | 84 | 18.5 | 25 | 75 | 1465 | 990 | 1345 | ||||
| 13.0 | 189 | 1.91 | 67 | 2.36 | 83 | 18.5 | 25 | 75 | 1465 | 990 | 1345 | ||||
| DA-22 | 7.5 | 109 | 3.57 | 126 | 3.65 | 129 | 22 | 30 | 75 | 1465 | 990 | 1345 | 477 | G1-1/4″ | |
| 8.5 | 123 | 3.55 | 125 | 3.63 | 128 | 22 | 30 | 75 | 1465 | 990 | 1345 | ||||
| 10.5 | 152 | 3.00 | 106 | 2.38 | 84 | 22 | 30 | 75 | 1465 | 990 | 1345 | ||||
| 13.0 | 189 | 2.97 | 105 | 2.36 | 83 | 22 | 30 | 75 | 1465 | 990 | 1345 | ||||
| DA-30 | 7.5 | 109 | 5.28 | 187 | 4.49 | 159 | 30 | 40 | 85 | 1600 | 1250 | 1550 | 682 | G1-1/2″ | |
| 8.5 | 123 | 5.26 | 186 | 4.48 | 158 | 30 | 40 | 85 | 1600 | 1250 | 1550 | ||||
| 10.5 | 152 | 5.21 | 184 | 4.47 | 158 | 30 | 40 | 85 | 1600 | 1250 | 1550 | ||||
| 13.0 | 189 | 3.45 | 122 | 3.58 | 126 | 30 | 40 | 85 | 1600 | 1250 | 1550 | ||||
| DA-37 | 7.5 | 109 | 6.54 | 231 | 6.33 | 224 | 37 | 50 | 85 | 1600 | 1250 | 1550 | 728 | G1-1/2″ | |
| 8.5 | 123 | 6.52 | 230 | 6.30 | 222 | 37 | 50 | 85 | 1600 | 1250 | 1550 | ||||
| 10.5 | 152 | 5.21 | 184 | 4.47 | 158 | 37 | 50 | 85 | 1600 | 1250 | 1550 | ||||
| 13.0 | 189 | 5.16 | 182 | 4.43 | 156 | 37 | 50 | 85 | 1600 | 1250 | 1550 | ||||
| DA-45 | 7.5 | 109 | 7.67 | 271 | 7.79 | 275 | 45 | 60 | 85 | 1600 | 1250 | 1550 | 728 | G1-1/2″ | |
| 8.5 | 123 | 7.62 | 269 | 7.76 | 574 | 45 | 60 | 85 | 1600 | 1250 | 1550 | ||||
| 10.5 | 152 | 6.46 | 228 | 6.24 | 220 | 45 | 60 | 85 | 1600 | 1250 | 1550 | ||||
| 13.0 | 189 | 6.41 | 226 | 4.44 | 157 | 45 | 60 | 85 | 1600 | 1250 | 1550 | ||||
| DA-55 | 7.5 | 109 | 9.76 | 345 | 9.14 | 323 | 55 | 75 | 85 | 1876 | 1326 | 1700 | 1310 | G2″ | |
| 8.5 | 123 | 9.67 | 342 | 9.06 | 320 | 55 | 75 | 85 | 1876 | 1326 | 1700 | ||||
| 10.5 | 152 | 7.53 | 266 | 7.74 | 273 | 55 | 75 | 85 | 1876 | 1326 | 1700 | ||||
| 13.0 | 189 | 7.40 | 261 | 6.30 | 222 | 55 | 75 | 85 | 1876 | 1326 | 1700 | ||||
| DA-75 | 7.5 | 109 | 14.21 | 502 | 11.72 | 414 | 75 | 100 | 85 | 1876 | 1326 | 1700 | 1325 | G2″ | |
| 8.5 | 123 | 12.55 | 443 | 11.63 | 411 | 75 | 100 | 85 | 1876 | 1326 | 1700 | ||||
| 10.5 | 152 | 9.51 | 336 | 11.43 | 404 | 75 | 100 | 85 | 1876 | 1326 | 1700 | ||||
| 13.0 | 189 | 9.23 | 326 | 8.75 | 309 | 75 | 100 | 85 | 1876 | 1326 | 1700 | ||||
| DA-90(W) | 7.5 | 109 | 16.62 | 587 | 17.01 | 601 | 90 | 120 | Direct Driven | 72 | 2450 | 1800 | 1700 | 2450 | DN80 |
| 8.5 | 123 | 16.37 | 578 | 16.82 | 594 | 90 | 120 | Air Cooling Or | 72 | 2450 | 1800 | 1700 | |||
| 10.5 | 152 | 14.21 | 502 | 14.87 | 525 | 90 | 120 | Water Cooling | 72 | 2450 | 1800 | 1700 | |||
| 13.0 | 189 | 11.77 | 416 | 11.27 | 398 | 90 | 120 | 72 | 2450 | 1800 | 1700 | ||||
| DA-110(W) | 7.5 | 109 | 20.13 | 711 | 19.10 | 674 | 110 | 150 | 72 | 2450 | 1800 | 1700 | 2500 | DN80 | |
| 8.5 | 123 | 20.05 | 708 | 19.06 | 673 | 110 | 150 | 72 | 2450 | 1800 | 1700 | ||||
| 10.5 | 152 | 16.33 | 576 | 17.01 | 601 | 110 | 150 | 72 | 2450 | 1800 | 1700 | ||||
| 13.0 | 189 | 14.11 | 498 | 14.68 | 518 | 110 | 150 | 72 | 2450 | 1800 | 1700 | ||||
| DA-132(W) | 7.5 | 109 | 22.85 | 807 | 24.37 | 861 | 132 | 175 | 72 | 2450 | 1800 | 1700 | 2600 | DN80 | |
| 8.5 | 123 | 22.73 | 802 | 24.23 | 856 | 132 | 175 | 72 | 2450 | 1800 | 1700 | ||||
| 10.5 | 152 | 19.88 | 702 | 18.95 | 669 | 132 | 175 | 72 | 2450 | 1800 | 1700 | ||||
| 13.0 | 189 | 16.51 | 583 | 16.82 | 594 | 132 | 175 | 72 | 2450 | 1800 | 1700 | ||||
| DA-160(W) | 7.5 | 109 | 26.92 | 950 | 27.90 | 985 | 160 | 215 | 78 | 2650 | 1700 | 1850 | 3200 | DN80 | |
| 8.5 | 123 | 26.86 | 949 | 27.76 | 980 | 160 | 215 | 78 | 2650 | 1700 | 1850 | ||||
| 10.5 | 152 | 22.44 | 792 | 23.97 | 846 | 160 | 215 | 78 | 2650 | 1700 | 1850 | ||||
| 13.0 | 189 | 19.63 | 693 | 18.82 | 664 | 160 | 215 | 78 | 2650 | 1700 | 1850 | ||||
| DA-185(W) | 7.5 | 109 | 28.89 | 1571 | 30.53 | 1078 | 185 | 250 | 78 | 2650 | 1700 | 1850 | 3300 | DN80 | |
| 8.5 | 123 | 28.84 | 1018 | 30.44 | 1075 | 185 | 250 | 78 | 2650 | 1700 | 1850 | ||||
| 10.5 | 152 | 25.11 | 886 | 27.46 | 970 | 185 | 250 | 78 | 2650 | 1700 | 1850 | ||||
| 13.0 | 189 | 22.08 | 780 | 23.69 | 836 | 185 | 250 | 78 | 2650 | 1700 | 1850 | ||||
| DA-200(W) | 7.5 | 109 | 31.88 | 1126 | 30.53 | 1078 | 200 | 270 | 80 | 3000 | 1950 | 2030 | 4750 | DN100 | |
| 8.5 | 123 | 31.82 | 1124 | 30.44 | 1075 | 200 | 270 | 80 | 3000 | 1950 | 2030 | ||||
| 10.5 | 152 | 28.48 | 1006 | 30.22 | 1067 | 200 | 270 | 80 | 3000 | 1950 | 2030 | ||||
| 13.0 | 189 | 25.00 | 883 | 27.07 | 956 | 200 | 270 | 80 | 3000 | 1950 | 2030 | ||||
| DA-220(W) | 7.5 | 109 | 36.20 | 1278 | 37.22 | 1314 | 220 | 300 | 80 | 3000 | 1950 | 2030 | 4800 | DN100 | |
| 8.5 | 123 | 36.15 | 1276 | 37.17 | 1312 | 220 | 300 | 80 | 3000 | 1950 | 2030 | ||||
| 10.5 | 152 | 31.71 | 1120 | 33.25 | 1174 | 220 | 300 | 80 | 3000 | 1950 | 2030 | ||||
| 13.0 | 189 | 28.48 | 1006 | 27.07 | 956 | 220 | 300 | 80 | 3000 | 1950 | 2030 | ||||
| DA-250(W) | 7.5 | 109 | 43.31 | 1529 | 42.87 | 1514 | 250 | 350 | 80 | 3000 | 1950 | 2030 | 4850 | DN100 | |
| 8.5 | 123 | 43.24 | 1527 | 41.30 | 1458 | 250 | 350 | 80 | 3000 | 1950 | 2030 | ||||
| 10.5 | 152 | 36.03 | 1272 | 37.04 | 1308 | 250 | 350 | 80 | 3000 | 1950 | 2030 | ||||
| 13.0 | 189 | 31.55 | 1114 | 33.15 | 1170 | 250 | 350 | 80 | 3000 | 1950 | 2030 | ||||
| DA-280(W) | 7.5 | 109 | 46.59 | 1645 | 47.16 | 1665 | 280 | 375 | 85 | 3700 | 2300 | 2450 | 5200 | DN125 | |
| 8.5 | 123 | 46.53 | 1643 | 45.64 | 1612 | 280 | 375 | 85 | 3700 | 2300 | 2450 | ||||
| 10.5 | 152 | 42.95 | 1516 | 42.56 | 1503 | 280 | 375 | 85 | 3700 | 2300 | 2450 | ||||
| 13.0 | 189 | 35.89 | 1267 | 36.95 | 1305 | 280 | 375 | 85 | 3700 | 2300 | 2450 | ||||
| DA-315(W) | 7.5 | 109 | 53.16 | 1877 | 50.88 | 1797 | 315 | 425 | 85 | 3700 | 2300 | 2450 | 6000 | DN125 | |
| 8.5 | 123 | 52.63 | 1858 | 50.83 | 1795 | 315 | 425 | 85 | 3700 | 2300 | 2450 | ||||
| 10.5 | 152 | 43.05 | 1520 | 46.27 | 1634 | 315 | 425 | 85 | 3700 | 2300 | 2450 | ||||
| 13.0 | 189 | 42.93 | 1516 | 40.32 | 1424 | 315 | 425 | 85 | 3700 | 2300 | 2450 | ||||
| DA-355(W) | 7.5 | 109 | 63.37 | 2238 | 58.12 | 2052 | 355 | 475 | 85 | 4500 | 2500 | 2450 | 7000 | DN125 | |
| 8.5 | 123 | 63.16 | 2230 | 56.54 | 1997 | 355 | 475 | 85 | 4500 | 2500 | 2450 | ||||
| 10.5 | 152 | 52.63 | 1858 | 51.57 | 1821 | 355 | 475 | 85 | 4500 | 2500 | 2450 | ||||
| 13.0 | 189 | 43.79 | 1546 | 45.35 | 1601 | 355 | 475 | 85 | 4500 | 2500 | 2450 | ||||
| DA-400(W) | 7.5 | 109 | 70.99 | 2507 | 61.72 | 2179 | 400 | 550 | 85 | 4500 | 2500 | 2450 | 8000 | DN125 | |
| 8.5 | 123 | 70.64 | 2494 | 59.72 | 2109 | 400 | 550 | 85 | 4500 | 2500 | 2450 | ||||
| 10.5 | 152 | 52.63 | 1858 | 56.52 | 1996 | 400 | 550 | 85 | 4500 | 2500 | 2450 | ||||
| 13.0 | 189 | 46.34 | 1636 | 51.35 | 1813 | 400 | 550 | 85 | 4500 | 2500 | 2450 | ||||
*) FAD in accordance with ISO 1217 : 2009, Annex C: Absolute intake pressure 1 bar (a), cooling and air intake temperature 20 °C
**) Noise level as per ISO 2151 and the basic standard ISO 9614-2, operation at maximum operating pressure and maximum speed; tolerance: ± 3 dB(A)
***) EEI 1- Energy Effiency Index 1, which refers to enhanced energy saving series
Specifications are subject to change without notice.
DENAIR Factory & Product Lines
DENAIR Exhibition
We carefully selected for you the classic case
Enhanced Energy Saving Air Compressor in Oman
Project Name: Sandblasting in Muscat, Oman.
Product Name: 75KW 100HP Enhanced Energy Saving screw air compressor EEI 1 (Energy Efficiency Index 1) with air dryer, air receiver tank and air filters.
Model No. & Qty: DA-75+ x 1.
Working Time: From June, 2016 till now
Event: In June, 2015, 1 set of CHINAMFG enhanced energy saving air compressor system was installed in Muscat Oman. This is the first project finished by CHINAMFG distributor in Oman. Our partner Mr. Hari shared the photos at working site to us as a good starting. That means more and more CHINAMFG energy saving solutions will contribute to the industries in Oman in the near future. CHINAMFG air compressor factory and air compressor distributor will try the best to provide top quality products, cost effective solution and excellent service for local users in Oman. In order to ensure the most professional service, the distributor plans to send 2 service engineers to CHINAMFG factory in ZheJiang for training and learnin. We will update the news at that time.
FAQ
Q1: Are you factory or trade company?
A1: We are factory.
Q2: What the exactly address of your factory?
A2:No. 366, YangzhuangBang Street, Pingxing Rd., Xindai Town, HangZhou, ZHangZhoug Province, China
.
Q3: Warranty terms of your air compressor machine?
A3: Two years warranty for the machine and technical support according to your needs.
Q4: Will you provide some spare parts of the air compressor?
A4: Yes, of course.
Q5: How long will you take to arrange production?
A5: 380V 50HZ we can delivery the goods within 10 days. Other electricity or other color we will delivery within 22 days
Q6: Can you accept OEM orders?
A6: Yes, with professional design team, OEM orders are highly welcome.
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| Lubrication Style: | Lubricated |
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| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Customization: |
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Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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What are the advantages of using rotary vane compressors?
Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:
1. Compact and Lightweight:
Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.
2. High Efficiency:
Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.
3. Quiet Operation:
Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.
4. Oil Lubrication:
Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.
5. Versatile Applications:
Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.
6. Easy Maintenance:
Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.
These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.
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How do you maintain proper air quality in compressed air systems?
Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:
1. Air Filtration:
Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.
2. Moisture Control:
Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.
3. Oil Removal:
If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.
4. Regular Maintenance:
Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.
5. Air Receiver Tank Maintenance:
Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.
6. Air Quality Testing:
Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.
7. Education and Training:
Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.
8. Documentation and Record-Keeping:
Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.
By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.
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What are the key components of an air compressor system?
An air compressor system consists of several key components that work together to generate and deliver compressed air. Here are the essential components:
1. Compressor Pump: The compressor pump is the heart of the air compressor system. It draws in ambient air and compresses it to a higher pressure. The pump can be reciprocating (piston-driven) or rotary (screw, vane, or scroll-driven) based on the compressor type.
2. Electric Motor or Engine: The electric motor or engine is responsible for driving the compressor pump. It provides the power necessary to operate the pump and compress the air. The motor or engine’s size and power rating depend on the compressor’s capacity and intended application.
3. Air Intake: The air intake is the opening or inlet through which ambient air enters the compressor system. It is equipped with filters to remove dust, debris, and contaminants from the incoming air, ensuring clean air supply and protecting the compressor components.
4. Compression Chamber: The compression chamber is where the actual compression of air takes place. In reciprocating compressors, it consists of cylinders, pistons, valves, and connecting rods. In rotary compressors, it comprises intermeshing screws, vanes, or scrolls that compress the air as they rotate.
5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air. It acts as a buffer, allowing for a steady supply of compressed air during peak demand periods and reducing pressure fluctuations. The tank also helps separate moisture from the compressed air, allowing it to condense and be drained out.
6. Pressure Relief Valve: The pressure relief valve is a safety device that protects the compressor system from over-pressurization. It automatically releases excess pressure if it exceeds a predetermined limit, preventing damage to the system and ensuring safe operation.
7. Pressure Switch: The pressure switch is an electrical component that controls the operation of the compressor motor. It monitors the pressure in the system and automatically starts or stops the motor based on pre-set pressure levels. This helps maintain the desired pressure range in the receiver tank.
8. Regulator: The regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications, ensuring a consistent and safe supply of compressed air.
9. Air Outlet and Distribution System: The air outlet is the point where the compressed air is delivered from the compressor system. It is connected to a distribution system comprising pipes, hoses, fittings, and valves that carry the compressed air to the desired application points or tools.
10. Filters, Dryers, and Lubricators: Depending on the application and air quality requirements, additional components such as filters, dryers, and lubricators may be included in the system. Filters remove contaminants, dryers remove moisture from the compressed air, and lubricators provide lubrication to pneumatic tools and equipment.
These are the key components of an air compressor system. Each component plays a crucial role in the generation, storage, and delivery of compressed air for various industrial, commercial, and personal applications.


editor by CX 2024-02-09
China best 10HP Permanent Magnet Frequency Conversion Rotary Screw Air Compressor manufacturer
Product Description
Technical Specifications Of Screw Air Compressor:
| Permanent Magnet Frequency Conversion Rotary Screw Air Compressor | |||||||||
| 10HP-20HP with Air Dryer and Tank | |||||||||
| Item | Parameters | Parameters | Parameters | ||||||
| Model | TPM-10AS | TPM-15AS | TPM-20AS | ||||||
| Rated Working Pressure (MPa) | 0.6-0.8/1.0/1.2 | 0.6-0.8/1.0/1.2 | 0.6-0.8/1.0/1.2 | ||||||
| Rated capacity (m3/min) adjust scope by inverter | 0.54-1.35/0.41-1.03/0.33-0.83 | 0.72-1.8/0.54-1.34/0.41-1.03 | 1.04-2.6/0.83-2.07/0.7-1.76 | ||||||
| Cooling method | Air cooling | Air cooling | Air cooling | ||||||
| Maximum ambient temperature(ºC) | 45ºC | 45ºC | 45ºC | ||||||
| Compression stage | Single stage | Single stage | Single stage | ||||||
| Exhaust oil content | ≤3 ppm | ≤3 ppm | ≤3 ppm | ||||||
| Noise level dB(A) | ≤63 | ≤63 | ≤63 | ||||||
| Air outlet size | G3/4 | G3/4 | G1 | ||||||
| Driven method | Direct coupling | Direct coupling | Direct coupling | ||||||
| Lubricating oil quantity (Liter) | 4 | 9 | 9 | ||||||
| Voltage/Hertz(V/HZ) | 380V/50HZ/60HZ | 380V/50HZ/60HZ | 380V/50HZ/60HZ | ||||||
| Permanent magnet variable speed motor | Model | ||||||||
| Rate power( HP/KW) | 10/7.5 | 15/11 | 15/11 | ||||||
| Voltage/Hertz(V/HZ) | 380V/50HZ/60HZ | 380V/50HZ/60HZ | 380V/50HZ/60HZ | ||||||
| variable Speed (rpm) | 1500-2950 | 1500-2950 | 1500-2950 | ||||||
| Starting method | Frequency conversion start | Frequency conversion start | Frequency conversion start | ||||||
| Insulation class | F | F | F | ||||||
| Service factor | 1.2 | 1.2 | 1.2 | ||||||
| Air receiver tank | Capacity (Liter) | 400 | 400 | 400 | |||||
| Design pressure (MPa) | 1 | 1 | 1 | ||||||
| Air dryer | Voltage/Hertz(V/HZ) | AC220V/50Hz | AC220V/50Hz | AC220V/50Hz | |||||
| Power( kW) | 0.3 | 0.45 | 0.5 | ||||||
| Pressure dew point ( ºC) | 2-10 | 2-10 | 2-10 | ||||||
| Capacity (m3/min) | 1.6 | 2.6 | 2.6 | ||||||
| High efficiency filter | Capacity( Nm3/min) | 1.6 | 2.6 | 2.6 | |||||
| Rated working pressure( MPa) | 1 | 1 | 1 | ||||||
| Particle content(μm) | 0.01um | 0.01um | 0.01um | ||||||
| Oil content (ppm) | 0.001ppm | 0.001ppm | 0.001ppm | ||||||
| filter quantity and class | 4pcs and CTAH class | 4pcs and CTAH class | 4pcs and CTAH class | ||||||
| drain water | automatic | automatic | automatic | ||||||
| Dimension L ×W×H (mm) | 1700×750×1550 | 1700×750×1661 | 1700×750×1661 | ||||||
| Weight(kg) | 450 | 550 | 600 | ||||||
| PRICE QUOTATION | TPM-10AS | TPM-15AS | TPM-20AS | ||||||
| EXW | 2100USD | 2500USD | 2750USD | ||||||
| FOB ZheJiang | 2250USD | 2650USD | 2900USD | ||||||
| QUALITY GUARANTEE FOR WHOLEMOACHINE | 12MONTHS SINCE DELIVERY | 12MONTHS SINCE DELIVERY | 12MONTHS SINCE DELIVERY | ||||||
| PAYMENT : | LESS 3000USD, 100% IN ADVANCE, MORE 3000USD ,30% IN ADVANCE ,70% BEFORE SHIPPMENT | ||||||||
| OR LC AT SIGHT FOR MORE THAN 20000USD | |||||||||
Technical performance of core components:
1). Screw host
Screw main machine adopts Germany’s latest line technology main machine, large head and low speed. optimized Line design, high precision grinding tooth shape, less internal leakage, with high efficiency, low consumption, low noise Sound and high reliability features. Large head low speed; Using the third generation of asymmetric tooth type 5:6 Keep 0.003 inch clearance between rotors and never wear out. greatly prolong the life of the main engine. “This machine can run continuously for 365 days”.
2). The motor
Jiangtian, Saifu, Zhongyan, high efficiency air cooled fully enclosed motor, protection class IP23 Insulation grade F pole, continuous trouble-free long-term operation, grease
Long lubrication life, low noise, large starting torque.
3). Intake valve
Advanced input-check, combined structure, no exhaust check valve, can effectively prevent,Pour oil while stopping. The configuration of pressure regulating valve can automatically achieve 0-100% stepless regulation, control cylinder life,Life up to 3 million times, reduce operating costs, gas output stability, the host life greatly improved.
4) Oil-gas separator
Vertical structure, centrifugal, gravity, fine 3 efficient separation, deep filtration, imported filtration (ZheJiang Puluo), oil content is only 1-2ppm
5) Oil filter
Using imported rotary oil filter, internal bypass valve, to ensure that the oil road is not blocked
Effectively filter impurities in lubricating oil, oil deterioration, filtration accuracy of 0.1 micron, effectively protect the main
Normal operation. It is very convenient to replace, and can be replaced in a minute.
6) Air filter
High precision imported precision filter can ensure the normal operation of the compressor in the dust environment
7) Transmission device
German famous brand – opening coupling, transmission torque, transmission efficiency 99.8% or more
8)Exhaust temperature;
With no scaling, corrosion resistance and other characteristics, greatly convenient for users to the maintenance of the cooler, cooler heat dissipation area is more uniform
9). Temperature control valve
High sensitivity spool, automatic control and adjustment into the engine oil temperature, so as to control the exhaust temperature in a certain temperature range, can prevent the compressed air water precipitation.
10). Minimum pressure valve
The world famous brand (VMC), the use of pressure loss is only 0.015mpa non-metal double cone sensitive valve design structure, open and close quickly, sensitive, reliable, can ensure the pressure required for oil circulation in the compression system,
And stop the gas from flowing back.
11). Microcomputer display controller
Automatic intelligent operation, Chinese (English) display, touch button, easy to operate, without special training; Can display and deal with all kinds of on-site faults; The operation state is clear at a glance, and it can be unattended for 24 hours. It can realize multi-machine communication with the computer, and linkage communication between air compressors can be realized.
Technical performance of core components
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| After-sales Service: | Internet Instruction |
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| Warranty: | 1 One Year |
| Lubrication Style: | Lubricated |
| Customization: |
Available
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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What are the advantages of using an air compressor in construction?
Using an air compressor in construction offers numerous advantages that contribute to increased efficiency, productivity, and versatility. Here are some key benefits of using air compressors in construction:
- Powering Pneumatic Tools: Air compressors are commonly used to power a wide range of pneumatic tools on construction sites. Tools such as jackhammers, nail guns, impact wrenches, drills, and sanders can be operated using compressed air. Pneumatic tools are often preferred due to their lightweight, compact design and ability to deliver high torque or impact force.
- Efficient Operation: Air compressors provide a continuous and reliable source of power for pneumatic tools, allowing for uninterrupted operation without the need for frequent battery changes or recharging. This helps to maintain a smooth workflow and reduces downtime.
- Portability: Many construction air compressors are designed to be portable, featuring wheels or handles for easy maneuverability on job sites. Portable air compressors can be transported to different areas of the construction site as needed, providing power wherever it is required.
- Versatility: Air compressors are versatile tools that can be used for various applications in construction. Apart from powering pneumatic tools, they can also be utilized for tasks such as inflating tires, cleaning debris, operating air-operated pumps, and powering air horns.
- Increased Productivity: The efficient operation and power output of air compressors enable construction workers to complete tasks more quickly and effectively. Pneumatic tools powered by air compressors often offer higher performance and faster operation compared to their electric or manual counterparts.
- Cost Savings: Air compressors can contribute to cost savings in construction projects. Pneumatic tools powered by air compressors are generally more durable and have longer lifespans compared to electric tools. Additionally, since air compressors use compressed air as their power source, they do not require the purchase or disposal of batteries or fuel, reducing ongoing operational expenses.
- Reduced Electrocution Risk: Construction sites can be hazardous environments, with the risk of electrocution from electrical tools or equipment. By utilizing air compressors and pneumatic tools, the reliance on electrical power is minimized, reducing the risk of electrocution accidents.
It is important to select the appropriate air compressor for construction applications based on factors such as required air pressure, volume, portability, and durability. Regular maintenance, including proper lubrication and cleaning, is crucial to ensure the optimal performance and longevity of air compressors in construction settings.
In summary, the advantages of using air compressors in construction include powering pneumatic tools, efficient operation, portability, versatility, increased productivity, cost savings, and reduced electrocution risk, making them valuable assets on construction sites.
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How are air compressors employed in the mining industry?
Air compressors play a crucial role in the mining industry, providing reliable and efficient power for various mining operations. Here are some common applications of air compressors in mining:
1. Exploration and Drilling:
Air compressors are used during exploration and drilling activities in the mining industry. Compressed air is used to power drilling rigs, pneumatic hammers, and other drilling equipment. The high-pressure air generated by the compressor helps in drilling boreholes, extracting core samples, and exploring potential mineral deposits.
2. Ventilation and Air Quality Control:
Air compressors are employed in underground mining to provide ventilation and control air quality. Compressed air is used to operate ventilation fans and air circulation systems, ensuring adequate airflow and removing harmful gases, dust, and fumes from the mining tunnels and work areas.
3. Material Conveyance:
In mining operations, air compressors are used for material conveyance. Pneumatic systems powered by air compressors are utilized to transport materials such as coal, ore, and other minerals. Compressed air is used to operate pneumatic conveyors, pumps, and material handling equipment, allowing for efficient and controlled movement of bulk materials.
4. Dust Suppression:
Air compressors are employed for dust suppression in mining areas. Compressed air is used to spray water or other suppressants to control dust generated during mining activities. This helps in maintaining a safe and healthy work environment, reducing the risks associated with dust inhalation and improving visibility.
5. Instrumentation and Control:
Air compressors are used for instrumentation and control purposes in mining operations. Compressed air is utilized to power pneumatic control systems, control valves, and actuators. These systems regulate the flow of fluids, control equipment movements, and ensure the proper functioning of various mining processes.
6. Explosive Applications:
In mining, air compressors are used for explosive applications. Compressed air is employed to power pneumatic tools used for rock fragmentation, such as rock drills and pneumatic breakers. The controlled power of compressed air enables safe and efficient rock breaking without the need for traditional explosives.
7. Maintenance and Repair:
Air compressors are essential for maintenance and repair activities in the mining industry. Compressed air is used for cleaning machinery, removing debris, and powering pneumatic tools for equipment maintenance and repair tasks. The versatility and portability of air compressors make them valuable assets in maintaining mining equipment.
It is important to note that different mining operations may have specific requirements and considerations when selecting and using air compressors. The size, capacity, and features of air compressors can vary based on the specific mining application and environmental conditions.
By utilizing air compressors effectively, the mining industry can benefit from increased productivity, improved safety, and efficient operation of various mining processes.
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What are the key components of an air compressor system?
An air compressor system consists of several key components that work together to generate and deliver compressed air. Here are the essential components:
1. Compressor Pump: The compressor pump is the heart of the air compressor system. It draws in ambient air and compresses it to a higher pressure. The pump can be reciprocating (piston-driven) or rotary (screw, vane, or scroll-driven) based on the compressor type.
2. Electric Motor or Engine: The electric motor or engine is responsible for driving the compressor pump. It provides the power necessary to operate the pump and compress the air. The motor or engine’s size and power rating depend on the compressor’s capacity and intended application.
3. Air Intake: The air intake is the opening or inlet through which ambient air enters the compressor system. It is equipped with filters to remove dust, debris, and contaminants from the incoming air, ensuring clean air supply and protecting the compressor components.
4. Compression Chamber: The compression chamber is where the actual compression of air takes place. In reciprocating compressors, it consists of cylinders, pistons, valves, and connecting rods. In rotary compressors, it comprises intermeshing screws, vanes, or scrolls that compress the air as they rotate.
5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air. It acts as a buffer, allowing for a steady supply of compressed air during peak demand periods and reducing pressure fluctuations. The tank also helps separate moisture from the compressed air, allowing it to condense and be drained out.
6. Pressure Relief Valve: The pressure relief valve is a safety device that protects the compressor system from over-pressurization. It automatically releases excess pressure if it exceeds a predetermined limit, preventing damage to the system and ensuring safe operation.
7. Pressure Switch: The pressure switch is an electrical component that controls the operation of the compressor motor. It monitors the pressure in the system and automatically starts or stops the motor based on pre-set pressure levels. This helps maintain the desired pressure range in the receiver tank.
8. Regulator: The regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications, ensuring a consistent and safe supply of compressed air.
9. Air Outlet and Distribution System: The air outlet is the point where the compressed air is delivered from the compressor system. It is connected to a distribution system comprising pipes, hoses, fittings, and valves that carry the compressed air to the desired application points or tools.
10. Filters, Dryers, and Lubricators: Depending on the application and air quality requirements, additional components such as filters, dryers, and lubricators may be included in the system. Filters remove contaminants, dryers remove moisture from the compressed air, and lubricators provide lubrication to pneumatic tools and equipment.
These are the key components of an air compressor system. Each component plays a crucial role in the generation, storage, and delivery of compressed air for various industrial, commercial, and personal applications.


editor by CX 2024-02-06
China factory High-Quality Manufacturer 132kw175HP Power-Frequency Integrated Screw Air Compressor Manufacturer Direct Sales small air compressor
Product Description
HENNI INTERNATIONAL GROUP
Three selling points
Host Motor rotor Motor stator
The main parts of air compressor Generate electrical power used toproduce compresse dgas
About the air compressor
Oil and gas drum
Used to store gas The device is set simulta neously System pressurestabilization Definiteaction
| Power frequency air compressor:175A | |||
| Power | 132KW | Stress | 0.8Mpa |
| Size | 2400*1500*1860 | Exhaust | 22m³/min |
| Noise | 80±2Dda | Weight | 1725KG |
| Gas tanks:2m³ | |||
| Stress | 0.8Mpa | Internal diameter | 1000mm |
| Height | 2860mm | Material | Carbon Steel |
| Dryer:200AC | |||
| Wind volume | 28.5m³ | Electricity | 380/50HZ |
| Size | 1450*650*1400 | At the volumetric temperature | ≤80ºC |
| Dew point temperature | 2-10ºC | Stress | 4.7Mpa |
| Filter:DH-035 | |||
| Wind volume | 6m³ | Stress | 1.3Mpa |
| Diameter | 109mm | Length | 366mm |
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| After-sales Service: | Yes |
|---|---|
| Warranty: | 1 Year |
| Lubrication Style: | Lubricated |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Horizontal |
| Customization: |
Available
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What role do air dryers play in compressed air systems?
Air dryers play a crucial role in compressed air systems by removing moisture and contaminants from the compressed air. Compressed air, when generated, contains water vapor from the ambient air, which can condense and cause issues in the system and end-use applications. Here’s an overview of the role air dryers play in compressed air systems:
1. Moisture Removal:
Air dryers are primarily responsible for removing moisture from the compressed air. Moisture in compressed air can lead to problems such as corrosion in the system, damage to pneumatic tools and equipment, and compromised product quality in manufacturing processes. Air dryers utilize various techniques, such as refrigeration, adsorption, or membrane separation, to reduce the dew point of the compressed air and eliminate moisture.
2. Contaminant Removal:
In addition to moisture, compressed air can also contain contaminants like oil, dirt, and particles. Air dryers help in removing these contaminants to ensure clean and high-quality compressed air. Depending on the type of air dryer, additional filtration mechanisms may be incorporated to enhance the removal of oil, particulates, and other impurities from the compressed air stream.
3. Protection of Equipment and Processes:
By removing moisture and contaminants, air dryers help protect the downstream equipment and processes that rely on compressed air. Moisture and contaminants can negatively impact the performance, reliability, and lifespan of pneumatic tools, machinery, and instrumentation. Air dryers ensure that the compressed air supplied to these components is clean, dry, and free from harmful substances, minimizing the risk of damage and operational issues.
4. Improved Productivity and Efficiency:
Utilizing air dryers in compressed air systems can lead to improved productivity and efficiency. Dry and clean compressed air reduces the likelihood of equipment failures, downtime, and maintenance requirements. It also prevents issues such as clogging of air lines, malfunctioning of pneumatic components, and inconsistent performance of processes. By maintaining the quality of compressed air, air dryers contribute to uninterrupted operations, optimized productivity, and cost savings.
5. Compliance with Standards and Specifications:
Many industries and applications have specific standards and specifications for the quality of compressed air. Air dryers play a vital role in meeting these requirements by ensuring that the compressed air meets the desired quality standards. This is particularly important in industries such as food and beverage, pharmaceuticals, electronics, and automotive, where clean and dry compressed air is essential for product integrity, safety, and regulatory compliance.
By incorporating air dryers into compressed air systems, users can effectively control moisture and contaminants, protect equipment and processes, enhance productivity, and meet the necessary quality standards for their specific applications.
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How do you troubleshoot common air compressor problems?
Troubleshooting common air compressor problems can help identify and resolve issues that may affect the performance and functionality of the compressor. Here are some steps to troubleshoot common air compressor problems:
1. No Power:
- Check the power source and ensure the compressor is properly plugged in.
- Inspect the circuit breaker or fuse box to ensure it hasn’t tripped or blown.
- Verify that the compressor’s power switch or control panel is turned on.
2. Low Air Pressure:
- Check the air pressure gauge on the compressor. If the pressure is below the desired level, the compressor might not be building up enough pressure.
- Inspect for air leaks in the system. Leaks can cause a drop in pressure. Listen for hissing sounds or use a soapy water solution to identify the location of leaks.
- Ensure the compressor’s intake filter is clean and not clogged, as this can restrict airflow and reduce pressure.
3. Excessive Noise or Vibration:
- Inspect the compressor’s mounting and foundation to ensure it is secure and stable. Loose mounts can cause excessive noise and vibration.
- Check for loose or damaged components, such as belts, pulleys, or motor mounts. Tighten or replace as necessary.
- Verify that the compressor’s cooling system, such as the fan or fins, is clean and free from obstructions. Overheating can lead to increased noise and vibration.
4. Air Leaks:
- Inspect all connections, valves, fittings, and hoses for leaks. Tighten or replace any loose or damaged components.
- Apply a soapy water solution to suspected areas and look for bubbles. Bubbles indicate air leaks.
- Consider using thread sealant or Teflon tape on threaded connections to ensure a proper seal.
5. Excessive Moisture in Compressed Air:
- Check the compressor’s drain valve and ensure it is functioning properly. Open the valve to release any accumulated moisture.
- Inspect and clean the compressor’s moisture separator or air dryer, if equipped.
- Consider installing additional filtration or drying equipment to remove moisture from the compressed air system.
6. Motor Overheating:
- Ensure the compressor’s cooling system is clean and unobstructed.
- Check the motor’s air intake vents and clean any dust or debris that may be blocking airflow.
- Verify that the compressor is not being operated in an excessively hot environment.
- Check the motor’s lubrication levels and ensure they are within the manufacturer’s recommended range.
- Consider using a thermal overload protector to prevent the motor from overheating.
If troubleshooting these common problems does not resolve the issue, it may be necessary to consult the manufacturer’s manual or seek assistance from a qualified technician. Regular maintenance, such as cleaning, lubrication, and inspection, can also help prevent common problems and ensure the optimal performance of the air compressor.
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In which industries are air compressors widely used?
Air compressors find extensive usage across various industries due to their versatility and ability to generate compressed air. Here are some industries where air compressors are widely employed:
1. Manufacturing: Air compressors are essential in manufacturing processes for powering pneumatic tools and equipment. They are used for tasks such as operating assembly lines, powering robotic machinery, running paint sprayers, and driving pneumatic actuators.
2. Construction: Air compressors play a crucial role in the construction industry. They power pneumatic tools like jackhammers, nail guns, impact wrenches, and concrete breakers. Compressed air is also used for concrete spraying, sandblasting, and operating air-powered lifts and hoists.
3. Automotive: Air compressors are widely used in automotive manufacturing and repair. They power air tools used in auto body shops, tire inflation equipment, pneumatic lifts, and air-operated brake systems. Compressed air is also utilized in vehicle painting and drying processes.
4. Oil and Gas: The oil and gas industry extensively relies on air compressors for various applications. They are used for pneumatic drilling, powering pneumatic tools in refineries and petrochemical plants, operating pneumatic valves and actuators, and providing instrument air for control systems.
5. Food and Beverage: Air compressors are employed in the food and beverage industry for tasks such as packaging, bottling, and sealing. They power pneumatic conveying systems, control air pressure in food processing equipment, and provide clean compressed air for food handling and storage.
6. Pharmaceutical and Healthcare: Air compressors find application in pharmaceutical manufacturing and healthcare facilities. They are used for operating medical equipment, such as ventilators and dental tools. Compressed air is also utilized in pharmaceutical processes, including tablet coating, fluid bed drying, and aseptic packaging.
7. Aerospace: The aerospace industry relies on air compressors for various applications, including aircraft maintenance and assembly. They power pneumatic tools for aircraft repair, provide compressed air for cleaning and pressurizing systems, and support ground operations, such as tire inflation and aircraft de-icing.
8. Mining: Air compressors are extensively used in the mining industry. They power pneumatic tools for drilling, rock blasting, and excavation. Compressed air is also utilized for ventilation, conveying materials, and operating underground equipment.
9. Energy and Utilities: Air compressors play a vital role in the energy and utilities sector. They are used in power generation plants for pneumatic control systems, instrument air, and operating pneumatic valves. Compressed air is also employed for cleaning and maintenance purposes.
These are just a few examples of the industries where air compressors are widely utilized. The versatility and reliability of air compressors make them indispensable in numerous applications across diverse sectors.


editor by CX 2023-12-28
China manufacturer Mch-6 300bar Italian Scuba Diving Screw Air Compressor Pump manufacturer
Product Description
Introduction of MCH-6 300bar Italian Scuba Diving Screw Air Compressor Pump
300bar Air compressor
Charging rate: 100 L/min
Working pressure: 225 Bar – 300 Bar
Driven by: Three phase electric motor zmwm02
MCH-6 300bar Breathing Air Respirator Filling Compressor is the smallest, lightest portable breathing air compressor in the whole industry, the petrol engine of MCH6 series only 37KG,can easily put in the trunk of the car,carry to use the site. It can be used in the fire, scuba diving, shooting, emergency rescue, chemical, oil field and other fields. MCH6 has high quality and its character of portable and simple design. The output of compressed air meets the criterion of EN12571.
Product Structure of MCH-6 300bar Italian Scuba Diving Screw Air Compressor Pump
Optional gasoline engine, three-phase, single-phase electric drive motor, V belt drive
Four cylinder level 4 high-pressure compressor
Stainless steel cooler between every level
Installed in the 400 bar high pressure on the compressor pressure gauge
1.2 CHINAMFG high pressure air tube, joints according to the needs of you
Stainless steel fan cover
Two oil-water separator, 2 drain valve (optional automatic decontamination)
Activated carbon molecular sieve filtration system
To set pressure automatic stop, prevent the relief valve frequent rev. Jump, ensure safety and security
Main Parameter of MCH-6 300bar Italian Scuba Diving Screw Air Compressor Pump
| Model | MCH-6/ET STHangZhouRD |
| Charging Rate | 100L/Min-6m3/h-3.5CBM |
| Filling Time Pressure | 6.8L 0-300Bar/20Min 10L 0-200Bar/20Min |
| Working Pressure | 225Bar/3200Psi 300Bar/4700Psi |
| Driven By | Three-Phase Electric Motor |
| Power | 3KW |
| Dimensions | Height: 35cm Width: 65cm Depth: 39cm 35*65*39cm |
| Weight | 39kg |
| Noise Pressure | 83 db |
| No. Of Stages and Cylinders | 4 |
| Lubricating Oil Capacity | 300cc (0.3L) 300ml |
| Lubricant | Coltri Oil CE 750 Coltri Oil CE 750 |
| Frame | Powder Coated Steel |
| Oil/Moisture Separator | After Last Stage |
| Filtration | Filter Cartridge Activated Carbon and Molecule |
| Full Load Amp | 11.5A(230V-50/60 HZ) 6.7A(400V-50/60 HZ |
| Interstage Coolers and After Coolers | Stainless Steel |
| Breathing Air | EN 12571 CGA |
| Suction Filter | 2 Micro Paper–25 Micro Polyester |
| Full load Amp | 11, 5 A (230 V – 50/60Hz) 6, 7 A (400 V – 50/60Hz) |
| Safety valve | On the separator housing |
Photos of MCH-6 300bar Italian Scuba Diving Screw Air Compressor Pump
| Lubrication Style: | Lubricated |
|---|---|
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Angular |
| Structure Type: | Closed Type |
| Installation Type: | Movable Type |
| Customization: |
Available
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What is the role of air compressors in power generation?
Air compressors play a significant role in power generation, supporting various operations and equipment within the industry. Here are some key roles of air compressors in power generation:
1. Combustion Air Supply:
Air compressors are used to supply compressed air for the combustion process in power generation. In fossil fuel power plants, such as coal-fired or natural gas power plants, compressed air is required to deliver a steady flow of air to the burners. The compressed air helps in the efficient combustion of fuel, enhancing the overall performance and energy output of the power plant.
2. Instrumentation and Control:
Air compressors are utilized for instrumentation and control systems in power generation facilities. Compressed air is used to operate pneumatic control valves, actuators, and other pneumatic devices that regulate the flow of steam, water, and gases within the power plant. The reliable and precise control provided by compressed air ensures efficient and safe operation of various processes and equipment.
3. Cooling and Ventilation:
In power generation, air compressors are involved in cooling and ventilation applications. Compressed air is used to drive air-operated cooling fans and blowers, providing adequate airflow for cooling critical components such as generators, transformers, and power electronics. The compressed air also assists in maintaining proper ventilation in control rooms, substations, and other enclosed spaces, helping to dissipate heat and ensure a comfortable working environment.
4. Cleaning and Maintenance:
Air compressors are employed for cleaning and maintenance tasks in power generation facilities. Compressed air is utilized to blow away dust, dirt, and debris from equipment, machinery, and electrical panels. It helps in maintaining the cleanliness and optimal performance of various components, reducing the risk of equipment failure and improving overall reliability.
5. Pneumatic Tools and Equipment:
In power generation plants, air compressors provide the necessary compressed air for operating pneumatic tools and equipment. These tools include impact wrenches, pneumatic drills, grinders, and sandblasting equipment, which are utilized for installation, maintenance, and repair tasks. The high-pressure air generated by compressors enables efficient and reliable operation of these tools, enhancing productivity and reducing manual effort.
6. Nitrogen Generation:
Sometimes, air compressors are used in power generation for nitrogen generation. Compressed air is passed through a nitrogen generator system, which separates nitrogen from other components of air, producing a high-purity nitrogen gas stream. Nitrogen is commonly used in power plant applications, such as purging systems, blanketing in transformers, and generator cooling, due to its inert properties and low moisture content.
7. Start-up and Emergency Systems:
Air compressors are an integral part of start-up and emergency systems in power generation. Compressed air is utilized to power pneumatic starters for gas turbines, providing the initial rotation needed to start the turbine. In emergency situations, compressed air is also used to actuate emergency shutdown valves, safety systems, and fire suppression equipment, ensuring the safe operation and protection of the power plant.
Overall, air compressors contribute to the efficient and reliable operation of power generation facilities, supporting combustion processes, control systems, cooling, cleaning, and various other applications critical to the power generation industry.
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Can air compressors be integrated into automated systems?
Yes, air compressors can be integrated into automated systems, providing a reliable and versatile source of compressed air for various applications. Here’s a detailed explanation of how air compressors can be integrated into automated systems:
Pneumatic Automation:
Air compressors are commonly used in pneumatic automation systems, where compressed air is utilized to power and control automated machinery and equipment. Pneumatic systems rely on the controlled release of compressed air to generate linear or rotational motion, actuating valves, cylinders, and other pneumatic components. By integrating an air compressor into the system, a continuous supply of compressed air is available to power the automation process.
Control and Regulation:
In automated systems, air compressors are often connected to a control and regulation system to manage the compressed air supply. This system includes components such as pressure regulators, valves, and sensors to monitor and adjust the air pressure, flow, and distribution. The control system ensures that the air compressor operates within the desired parameters and provides the appropriate amount of compressed air to different parts of the automated system as needed.
Sequential Operations:
Integration of air compressors into automated systems enables sequential operations to be carried out efficiently. Compressed air can be used to control the timing and sequencing of different pneumatic components, ensuring that the automated system performs tasks in the desired order and with precise timing. This is particularly useful in manufacturing and assembly processes where precise coordination of pneumatic actuators is required.
Energy Efficiency:
Air compressors can contribute to energy-efficient automation systems. By incorporating energy-saving features such as Variable Speed Drive (VSD) technology, air compressors can adjust their power output according to the demand, reducing energy consumption during periods of low activity. Additionally, efficient control and regulation systems help optimize the use of compressed air, minimizing waste and improving overall energy efficiency.
Monitoring and Diagnostics:
Integration of air compressors into automated systems often includes monitoring and diagnostic capabilities. Sensors and monitoring devices can be installed to collect data on parameters such as air pressure, temperature, and system performance. This information can be used for real-time monitoring, preventive maintenance, and troubleshooting, ensuring the reliable operation of the automated system.
When integrating air compressors into automated systems, it is crucial to consider factors such as the specific requirements of the automation process, the desired air pressure and volume, and the compatibility of the compressor with the control and regulation system. Consulting with experts in automation and compressed air systems can help in designing an efficient and reliable integration.
In summary, air compressors can be seamlessly integrated into automated systems, providing the necessary compressed air to power and control pneumatic components, enabling sequential operations, and contributing to energy-efficient automation processes.
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In which industries are air compressors widely used?
Air compressors find extensive usage across various industries due to their versatility and ability to generate compressed air. Here are some industries where air compressors are widely employed:
1. Manufacturing: Air compressors are essential in manufacturing processes for powering pneumatic tools and equipment. They are used for tasks such as operating assembly lines, powering robotic machinery, running paint sprayers, and driving pneumatic actuators.
2. Construction: Air compressors play a crucial role in the construction industry. They power pneumatic tools like jackhammers, nail guns, impact wrenches, and concrete breakers. Compressed air is also used for concrete spraying, sandblasting, and operating air-powered lifts and hoists.
3. Automotive: Air compressors are widely used in automotive manufacturing and repair. They power air tools used in auto body shops, tire inflation equipment, pneumatic lifts, and air-operated brake systems. Compressed air is also utilized in vehicle painting and drying processes.
4. Oil and Gas: The oil and gas industry extensively relies on air compressors for various applications. They are used for pneumatic drilling, powering pneumatic tools in refineries and petrochemical plants, operating pneumatic valves and actuators, and providing instrument air for control systems.
5. Food and Beverage: Air compressors are employed in the food and beverage industry for tasks such as packaging, bottling, and sealing. They power pneumatic conveying systems, control air pressure in food processing equipment, and provide clean compressed air for food handling and storage.
6. Pharmaceutical and Healthcare: Air compressors find application in pharmaceutical manufacturing and healthcare facilities. They are used for operating medical equipment, such as ventilators and dental tools. Compressed air is also utilized in pharmaceutical processes, including tablet coating, fluid bed drying, and aseptic packaging.
7. Aerospace: The aerospace industry relies on air compressors for various applications, including aircraft maintenance and assembly. They power pneumatic tools for aircraft repair, provide compressed air for cleaning and pressurizing systems, and support ground operations, such as tire inflation and aircraft de-icing.
8. Mining: Air compressors are extensively used in the mining industry. They power pneumatic tools for drilling, rock blasting, and excavation. Compressed air is also utilized for ventilation, conveying materials, and operating underground equipment.
9. Energy and Utilities: Air compressors play a vital role in the energy and utilities sector. They are used in power generation plants for pneumatic control systems, instrument air, and operating pneumatic valves. Compressed air is also employed for cleaning and maintenance purposes.
These are just a few examples of the industries where air compressors are widely utilized. The versatility and reliability of air compressors make them indispensable in numerous applications across diverse sectors.


editor by CX 2023-12-15
China Custom 2021 New Design 185kw 10bar Low Noise Two Stage Oil Injected Screw Air Compressor for Spray Paint manufacturer
Product Description
2571 New Design 185kw 10bar Low Noise Two Stage Oil Injected Screw Air Compressor for Spray Paint
| Model | WZS-270PM-2S |
| Power | 380VAC/3ph/0~200Hz |
| Motor power | 200kw |
| Dimension | 3200*1750*2350mm |
Before quotation:
1.Before quoting, what should users offer?
1).Discharge pressure (Bar, Mpa or Psi)
2).Air discharge/Air flow/Air capacity (m3/min or CFM)
3).Power supply (220/380V, 50/60Hz, 3Phase)
2.If I don’t know the pressure and air flow, what should I do?
1).Take the picture of nameplate, we will advise the suitable air compressor to you.
2).Tell us what industry you are, we can advise the suitable 1 (so as to air tank / air dryer / air filters).
High Efficiency PM Motor and Energy Saving
*With the high-performance permanent magnet material, PM motor won’t lose magnetism even under 120°c and can run for more than 15 years.
*No motor bearing: permanent magnet rotors is installed directly on the stretch out shaft of Male rotor. This structure doesn’t have the bearing and eliminates the motor bearing fault.
*Comparing to normal variable speed motor, the permanent magnet synchronous motor performs with even better energy efficiency. Especially in the low-speed condition, it can still maintain a high motor efficiency.
SHIPPING
Delivery: time 5-25 working days after payment receipt confirmed(based on actual quantity)
packing:standard export packing. or customized packing as your
Professional: goods shipping forwarder.
FAQ
Q: OEM/ODM, or customers logo printed is available?
Yes, OEM/ODM, customers logo is welcomed.
Q: Delivery date?
Usually 5-25 workdays after receiving deposit, specific delivery date based on order quantity
Q: what’s your payment terms?
Regularly doing 30% deposit and 70% balance by T/T, Western Union, Paypal, other payment terms also can be discussed based on our cooperation.
Q: How to control your quality?
We have professional QC team, control the quality during the mass production and inspect completely goods before shipping.
Q: If we don’t have shipping forwarder in China, would you do this for us?
We can offer you best shipping line to ensure you can get the goods timely at best price.
Q: come to China before, can you be my guide in China?
We are happy to provide you orservice, such as booking ticket, pick up at the airport, booking hotel, accompany visiting market or factory
| After-sales Service: | Video Technical Support |
|---|---|
| Warranty: | 1 Year |
| Lubrication Style: | Oil-less |
| Cooling System: | Air Cooling |
| Power Source: | AC Power |
| Cylinder Position: | Horizontal |
| Customization: |
Available
|
|
|---|
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What are the advantages of using rotary vane compressors?
Rotary vane compressors offer several advantages that make them a popular choice for various applications. These compressors are widely used in industries where a reliable and efficient source of compressed air is required. Here are the advantages of using rotary vane compressors:
1. Compact and Lightweight:
Rotary vane compressors are typically compact and lightweight compared to other types of compressors. Their compact design makes them suitable for installations where space is limited, such as in small workshops or mobile applications. The lightweight nature of these compressors allows for easy transportation and maneuverability.
2. High Efficiency:
Rotary vane compressors are known for their high efficiency. The design of the vanes and the compression chamber allows for smooth and continuous compression, resulting in minimal energy losses. This efficiency translates into lower energy consumption and reduced operating costs over time.
3. Quiet Operation:
Rotary vane compressors operate with relatively low noise levels. The design of the compressor, including the use of vibration damping materials and sound insulation, helps to minimize noise and vibrations during operation. This makes rotary vane compressors suitable for applications where noise reduction is important, such as in indoor environments or noise-sensitive areas.
4. Oil Lubrication:
Many rotary vane compressors utilize oil lubrication, which provides several benefits. The oil lubrication helps to reduce wear and friction between the moving parts, resulting in extended compressor life and improved reliability. It also contributes to better sealing and improved efficiency by minimizing internal leakage.
5. Versatile Applications:
Rotary vane compressors are versatile and can be used in a wide range of applications. They are suitable for both industrial and commercial applications, including automotive workshops, small manufacturing facilities, dental offices, laboratories, and more. They can handle various compressed air requirements, from light-duty tasks to more demanding applications.
6. Easy Maintenance:
Maintenance of rotary vane compressors is relatively straightforward. Routine maintenance tasks typically include oil changes, filter replacements, and periodic inspection of vanes and seals. The simplicity of the design and the availability of replacement parts make maintenance and repairs easier and more cost-effective.
These advantages make rotary vane compressors an attractive choice for many applications, providing reliable and efficient compressed air solutions.
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What are the environmental considerations when using air compressors?
When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:
Energy Efficiency:
Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.
Air Leakage:
Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.
Noise Pollution:
Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.
Emissions:
While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.
Proper Waste Management:
Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.
Sustainable Practices:
Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.
By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.
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What is the role of air compressor tanks?
Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions:
1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air.
2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment.
3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation.
4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air.
5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor.
6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow.
Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.


editor by CX 2023-12-13
China Hot selling Screw Air Compressor 3.7-315kw 5HP-420HP 5-8, 10, 12.5, 16bar 0.14-55.0m3/Min 1pH, 3pH 110V, 220V, 240V, 380V, 400V, 415V, 440V Belt/Direct Driven, VSD, 4in1 manufacturer
Product Description
Product Appearance:
Only Air Compressor
OL Series:
Fixed Speed Belt Driven Screw Air Compressor
Kilowatt:7.5-45kw
Working Pressure:8/10/12.5bar
Air Capacity:0.8-7.6m3/min
Power Supply:220V,380V,415V,440V(50/60Hz)
Cooling Method:Air cooling
OL Series Detail Page Jump:
product/PZsTfaUGuLAz/China-Ol-Series-Screw-Air-Compressor-Fixed-Speed-Belt-Driven-7-5-45kw-10-60HP-0-8-7-6m3-Min-8-10-12-5bar-220V-380V-415V-440V-50-60Hz-.html
OL Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| OL7.5CB-8 | 8 | 116 | 1.10 | 38 | 10 | 7.5 | Belt Drive | G1/2” | 220 | 850*600*850 |
| OL7.5CB-10 | 10 | 145 | 1.00 | 35 | ||||||
| OL7.5CB-13 | 12.5 | 182 | 0.80 | 28 | ||||||
| OL11CB-8 | 8 | 116 | 1.70 | 60 | 15 | 11 | Belt Drive | G3/4” | 280 | 850*600*950 |
| OL11CB-10 | 10 | 145 | 1.50 | 53 | ||||||
| OL11CB-13 | 12.5 | 182 | 1.30 | 45 | ||||||
| OL15-8 | 8 | 116 | 2.40 | 84 | 20 | 15 | Belt Drive | G1” | 380 | 950*870*1230 |
| OL15-10 | 10 | 145 | 2.20 | 77 | ||||||
| OL15-13 | 12.5 | 182 | 1.70 | 60 | ||||||
| OL18.5-8 | 8 | 116 | 3.00 | 106 | 25 | 18.5 | Belt Drive | G1” | 500 | 950*870*1230 |
| OL18.5-10 | 10 | 145 | 2.70 | 95 | ||||||
| OL18.5-13 | 12.5 | 182 | 2.30 | 81 | ||||||
| OL22-8 | 8 | 116 | 3.70 | 130 | 30 | 22 | Belt Drive | G1” | 540 | 950*870*1230 |
| OL22-10 | 10 | 145 | 3.20 | 113 | ||||||
| OL22-13 | 12.5 | 182 | 2.70 | 95 | ||||||
| OL30-8 | 8 | 116 | 5.00 | 176 | 40 | 30 | Belt Drive | G1-1/2” | 680 | 1150*990*1395 |
| OL30-10 | 10 | 145 | 4.50 | 159 | ||||||
| OL30-13 | 12.5 | 182 | 3.60 | 127 | ||||||
| OL37-8 | 8 | 116 | 6.20 | 219 | 50 | 37 | Belt Drive | G1-1/2” | 730 | 1150*990*1395 |
| OL37-10 | 10 | 145 | 5.60 | 197 | ||||||
| OL37-13 | 12.5 | 182 | 4.60 | 162 | ||||||
| OL45-8 | 8 | 116 | 7.20 | 254 | 60 | 45 | Belt Drive | G1-1/2” | 790 | 1150*990*1395 |
| OL45-10 | 10 | 145 | 6.50 | 229 | ||||||
| OL45-13 | 12.5 | 182 | 5.60 | 197 | ||||||
For more information, please contact us.
OLD series:
Fixed Speed Direct Driven Screw Air Compressor
Kilowatt:15-132kw
Working Pressure:8bar
Air Capacity:2.4-24.0m3/min
Power Supply:380V,400V,415V,440V(50/60Hz)
Cooling Method:Air cooling
OLD Series Detail Page Jump:
OLD Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| OL15D-8 | 8 | 116 | 2.40 | 84 | 20 | 15 | Direct Drive | G1” | 520 | 1410×850*1135 |
| OL18.5D-8 | 8 | 116 | 3.00 | 106 | 25 | 18.5 | Direct Drive | G1” | 540 | 1410*850*1140 |
| OL22D-8 | 8 | 116 | 3.60 | 127 | 30 | 22 | Direct Drive | G1” | 560 | 1410*850*1140 |
| OL37D-8 | 8 | 116 | 6.20 | 219 | 50 | 37 | Direct Drive | G1-1/2” | 730 | 1530*930*1255 |
| OL45D-8 | 8 | 116 | 7.60 | 268 | 75 | 55 | Direct Drive | G1-1/2” | 800 | 1530*930*1255 |
| OL55D-8 | 8 | 116 | 10.00 | 353 | 75 | 55 | Direct Drive | G1-1/2” | 1180 | 1800*1125*1430 |
| OL75D-8 | 8 | 116 | 13.00 | 459 | 100 | 75 | Direct Drive | G2” | 1470 | 2000*1300*1600 |
| OL90D-8 | 8 | 116 | 16.00 | 565 | 120 | 90 | Direct Drive | G2” | 1950 | 2130*1400*1750 |
| OL110D-8 | 8 | 116 | 20.00 | 706 | 150 | 110 | Direct Drive | DN65 | 2450 | 2550*1550*1900 |
| OL132D-8 | 8 | 116 | 24.00 | 848 | 180 | 132 | Direct Drive | DN65 | 2500 | 2550*1550*1900 |
For more information, please contact us.
CPM series:
Industrial Type Permanent Magnet VSD Screw Air Compressor
Kilowatt:7.5-132kw
Working Pressure:8/10bar
Air Capacity:1.15-22.5m3/min
Power Supply:380V,400V,415V,440V(50/60Hz)
Cooling Method:Air cooling
CPM Series Detail Page Jump:
CPM Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| C7.5PM | 8 | 116 | 1.15 | 40 | 10 | 7.5 | Direct Drive | G1/2″ | 180 | 850*600*980 |
| C11PM | 8 | 116 | 1.70 | 60 | 15 | 11 | Direct Drive | G1″ | 450 | 1150*800*1135 |
| C15PM | 8 | 116 | 2.60 | 91 | 20 | 15 | Direct Drive | G1″ | 480 | 1150*800*1135 |
| 10 | 145 | 2.20 | 77 | |||||||
| C22PM | 8 | 116 | 3.60 | 127 | 30 | 22 | Direct Drive | G1″ | 500 | 115*800*1135 |
| 10 | 145 | 3.20 | 113 | |||||||
| C30PM | 8 | 116 | 5.00 | 176 | 40 | 30 | Direct Drive | G1-1/2″ | 650 | 1350*930*1255 |
| 10 | 145 | 4.40 | 155 | |||||||
| C37PM | 8 | 116 | 6.50 | 229 | 50 | 37 | Direct Drive | G1-1/2″ | 680 | 1350*930*1255 |
| 10 | 145 | 5.60 | 197 | |||||||
| C45PM | 8 | 116 | 8.00 | 282 | 60 | 45 | Direct Drive | G1-1/2″ | 930 | 1500*1125*1480 |
| 10 | 145 | 7.00 | 247 | |||||||
| C55PM | 8 | 116 | 10.00 | 353 | 75 | 55 | Direct Drive | G1-1/2″ | 950 | 1500*1125*1480 |
| 10 | 145 | 8.60 | 303 | |||||||
| C75PM | 8 | 116 | 13.12 | 463 | 100 | 75 | Direct Drive | G2″ | 1150 | 1700*1200*1600 |
| 10 | 145 | 11.60 | 409 | |||||||
| C90PM | 8 | 116 | 15.20 | 537 | 120 | 90 | Direct Drive | G2″ | 1560 | 1900*1300*1900 |
| 10 | 145 | 13.30 | 470 | |||||||
| C110PM | 8 | 116 | 20.00 | 706 | 145 | 110 | Direct Drive | DN65 | 1700 | 2250*1500*1900 |
| 10 | 145 | 16.90 | 597 | |||||||
| C132PM | 8 | 116 | 22.50 | 795 | 175 | 132 | Direct Drive | DN65 | 1760 | 2250*1500*1900 |
| 10 | 145 | 20.10 | 710 | |||||||
For more information, please contact us.
JPM series:
Standard Type Permanent Magnet VSD Screw Air Compressor
Kilowatt:7.5-75kw
Working Pressure:8/10/15bar
Air Capacity:1.0-12.5m3/min
Power Supply:220V,380V,400V,415V,440V(50/60Hz)
Cooling method:Air cooling
JPM Series Detail Page Jump:
product/RQzUytoDvMkm/China-Scroll-Air-Compressor-High-Efficiency-Industrial-Low-Noise.html
JPM Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| J7.5PM | 8 | 116 | 1.10 | 38 | 10 | 7.5 | Direct Drive | G1/2″ | 165 | 850*600*980 |
| 10 | 145 | 0.90 | 31 | |||||||
| 12.5 | 181 | 0.80 | 28 | |||||||
| J11PM | 8 | 116 | 1.60 | 56 | 15 | 11 | Direct Drive | G1″ | 238 | 930*750*1205 |
| 10 | 145 | 1.40 | 49 | |||||||
| 12.5 | 181 | 1.30 | 45 | |||||||
| J15PM | 8 | 116 | 2.60 | 91 | 20 | 15 | Direct Drive | G1″ | 238 | 930*750*1205 |
| 10 | 145 | 2.00 | 70 | |||||||
| 12.5 | 181 | 1.40 | 49 | |||||||
| 15 | 217 | 1.40 | 49 | |||||||
| J22PM | 8 | 116 | 3.60 | 127 | 30 | 22 | Direct Drive | G1″ | 282 | 930*750*1205 |
| 10 | 145 | 3.00 | 106 | |||||||
| 12.5 | 181 | 2.50 | 88 | |||||||
| 15 | 217 | 2.30 | 81 | |||||||
| J30PM | 8 | 116 | 5.00 | 176 | 30 | 22 | Direct Drive | G1″ | 282 | 930*750*1205 |
| 10 | 145 | 4.30 | 151 | |||||||
| 12.5 | 181 | 3.60 | 127 | |||||||
| 15 | 217 | 3.10 | 109 | |||||||
| J37PM | 8 | 116 | 6.50 | 229 | 50 | 37 | Direct Drive | G1-1/2″ | 458 | 1100*940*1415 |
| 10 | 145 | 5.40 | 190 | |||||||
| 12.5 | 181 | 4.00 | 141 | |||||||
| 15 | 217 | 3.30 | 116 | |||||||
| J55PM | 8 | 116 | 10.00 | 353 | 75 | 55 | Direct Drive | G2″ | 860 | 1580*1160*1600 |
| J75PM | 8 | 116 | 12.50 | 441 | 90 | 75 | Direct Drive | G2″ | 930 | 1580*1160*1600 |
15 Bar:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| J15PM | 15 | 217 | 1.6 | 56 | 20 | 15 | Direct Drive | G1″ | 238 | 930*750*1205 |
| J22PM | 15 | 217 | 2.3 | 81 | 30 | 22 | Direct Drive | G1″ | 282 | 930*750*1205 |
| J37PM | 15 | 217 | 3.3 | 116 | 50 | 37 | Direct Drive | G1-1/2″ | 458 | 1100*940*1415 |
For more information, please contact us.
DPM series:
Economic Type Permanent Magnet VSD Screw Air Compressor
Kilowatt:7.5-75kw
Working Pressure:8/10bar
Air Capacity:0.9-12.5m3/min
Power Supply:380V,415V(50Hz)
Cooling method:Air cooling
DPM Series Detail Page Jump:
product/aEUrCLWPsokz/China-Olymtech-Dpm-Series-7-5kw-Portable-Air-Compressor.html
DPM Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| D7.5PM-8 | 8 | 116 | 1.02 | 36.0 | 10 | 7.5 | Direct Drive | G1/2″ | 125 | 850*600*840 |
| D7.5PM-10 | 10 | 145 | 0.90 | 31.0 | ||||||
| D11PM-8 | 8 | 116 | 1.60 | 56.0 | 15 | 11 | Direct Drive | G3/4″ | 225 | 1050*750*1040 |
| D11PM-10 | 10 | 145 | 1.52 | 53.0 | ||||||
| D15PM-8 | 8 | 116 | 2.30 | 81.0 | 20 | 15 | Direct Drive | G3/4″ | 240 | 1050*750*1040 |
| D15PM-10 | 10 | 145 | 2.00 | 70.0 | ||||||
| D22PM-8 | 8 | 116 | 3.50 | 123.0 | 30 | 22 | Direct Drive | G1″ | 301 | 1160*800*1150 |
| D22PM-10 | 10 | 145 | 3.00 | 106.0 | ||||||
| D30PM-8 | 8 | 116 | 4.24 | 149.0 | 40 | 30 | Direct Drive | G1-1/4″ | 430 | 1250*1030*1270 |
| D30PM-10 | 10 | 145 | 4.00 | 141.0 | ||||||
| D37PM-8 | 8 | 116 | 6.20 | 219.0 | 50 | 37 | Direct Drive | G1-1/4″ | 460 | 1250*1030*1270 |
| D37PM-10 | 10 | 145 | 5.40 | 190.0 | ||||||
| D45PM-8 | 8 | 116 | 7.47 | 263.0 | 60 | 45 | Direct Drive | G2″ | 840 | 1580*1160*1600 |
| D45PM-10 | 10 | 145 | 6.80 | 240.0 | ||||||
| D55PM-8 | 8 | 116 | 10.00 | 353.0 | 75 | 55 | Direct Drive | G2″ | 860 | 1580*1160*1600 |
| D55PM-10 | 10 | 145 | 7.50 | 265.0 | ||||||
| D75PM-8 | 8 | 116 | 12.50 | 441.0 | 100 | 75 | Direct Drive | G2″ | 930 | 1580*1160*1600 |
| D75PM-10 | 10 | 145 | 10.00 | 353.0 | ||||||
For more information, please contact us.
CY series:
Oil Cooled Permanent Magnet Motor VSD Screw Air Compressor
Kilowatt:15-75kw
Working Pressure:7/8/10bar
Air Capacity:2.0-13.2m3/min
Power Supply:380V,415V(50Hz)
Cooling Method:Air cooling
Motor:Oil cooled
CY Series Detail Page Jump:
product/dnPpVrIubqkK/China-40-Energy-Saving-Oil-Cooled-Pm-Motor-VSD-Screw-Air-Compressor.html
CY Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight | Dimension (Lx W x H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| C15Y | 7 | 102 | 2.6 | 91 | 20 | 15 | Direct Drive | G1″ | 280 | 1050*600*1125 |
| 8 | 116 | 2.6 | 91 | |||||||
| 10 | 145 | 2.0 | 70 | |||||||
| C22Y | 7 | 102 | 3.8 | 134 | 30 | 22 | Direct Drive | G1″ | 295 | 1050*600*1125 |
| 8 | 116 | 3.6 | 127 | |||||||
| 10 | 145 | 3.0 | 106 | |||||||
| C37Y | 7 | 102 | 6.7 | 236 | 50 | 37 | Direct Drive | G1-1/2″ | 425 | 1200*650*1500 |
| 8 | 116 | 6.5 | 229 | |||||||
| 10 | 145 | 5.4 | 190 | |||||||
| C55Y | 7 | 102 | 10.2 | 360 | 75 | 55 | Direct Drive | G2″ | 860 | 1580*1160*1600 |
| 8 | 116 | 10.0 | 353 | |||||||
| 10 | 145 | 8.0 | 282 | |||||||
| C75Y | 7 | 102 | 13.2 | 466 | 100 | 75 | Direct Drive | G2″ | 930 | 1580*1160*1600 |
| 8 | 116 | 12.5 | 441 | |||||||
| 10 | 145 | 10.0 | 353 | |||||||
For more information, please contact us.
2-Stage series:
(TF) Two-Stage Fixed Speed Screw Air Compressor
Kilowatt:22-250kw
Working Pressure:8/10/12.5bar
Air Capacity:3.2-50.0m3/min
Power Supply:380V,400V,415V,440V(50/60Hz)
Cooling Method:Air cooling
(TF)2-Stage Series Detail Page Jump:
(TF)2-Stage Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight |
Dimension (L*W*H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| 2TF22-8 | 8 | 116 | 4.10 | 144 | 30 | 22 | Direct Drive | Rp1-1/2 | 680 | 1400*880*1350 |
| 2TF22-10 | 10 | 145 | 3.50 | 123 | ||||||
| 2TF22-13 | 12.5 | 181 | 3.20 | 113 | ||||||
| 2TF30-8 | 8 | 116 | 6.00 | 212 | 45 | 30 | Direct Drive | Rp1-1/2 | 930 | 1950*1100*1390 |
| 2TF30-10 | 10 | 145 | 4.90 | 173 | ||||||
| 2TF30-13 | 12.5 | 181 | 4.20 | 148 | ||||||
| 2TF37-8 | 8 | 116 | 6.80 | 240 | 50 | 37 | Direct Drive | Rp1-1/2 | 930 | 1950*1100*1390 |
| 2TF37-10 | 10 | 145 | 5.80 | 204 | ||||||
| 2TF37-13 | 12.5 | 181 | 5.40 | 190 | ||||||
| 2TF45-8 | 8 | 116 | 8.20 | 289 | 60 | 45 | Direct Drive | Rp1-1/2 | 960 | 1950*1100*1390 |
| 2TF45-10 | 10 | 145 | 7.40 | 261 | ||||||
| 2TF45-13 | 12.5 | 181 | 6.60 | 233 | ||||||
| 2TF55-8 | 8 | 116 | 11.60 | 409 | 75 | 55 | Direct Drive | DN50 | 1870 | 2590*1500*1640 |
| 2TF55-10 | 10 | 145 | 11.30 | 399 | ||||||
| 2TF55-13 | 12.5 | 181 | 9.00 | 318 | ||||||
| 2TF75-8 | 8 | 116 | 15.60 | 551 | 100 | 75 | Direct Drive | DN50 | 1940 | 2590*1500*1640 |
| 2TF75-10 | 10 | 145 | 11.60 | 409 | ||||||
| 2TF75-13 | 12.5 | 181 | 11.30 | 399 | ||||||
| 2TF90-8 | 8 | 116 | 18.50 | 653 | 120 | 90 | Direct Drive | DN65 | 2170 | 2990*1700*1963 |
| 2TF90-10 | 10 | 145 | 15.20 | 537 | ||||||
| 2TF90-13 | 12.5 | 181 | 14.50 | 512 | ||||||
| 2TF110-8 | 8 | 116 | 21.00 | 742 | 150 | 110 | Direct Drive | DN65 | 2330 | 2990*1700*1963 |
| 2TF110-10 | 10 | 145 | 18.50 | 653 | ||||||
| 2TF110-13 | 12.5 | 181 | 16.00 | 565 | ||||||
| 2TF132-8 | 8 | 116 | 24.70 | 872 | 175 | 132 | Direct Drive | DN65 | 2415 | 2990*1700*1963 |
| 2TF132-10 | 10 | 145 | 21.30 | 752 | ||||||
| 2TF132-13 | 12.5 | 181 | 18.50 | 653 | ||||||
| 2TF160-8 | 8 | 116 | 31.00 | 1095 | 200 | 160 | Direct Drive | DN80 | 3970 | 3450*1880*2120 |
| 2TF160-10 | 10 | 145 | 26.00 | 918 | ||||||
| 2TF160-13 | 12.5 | 181 | 24.70 | 872 | ||||||
| 2TF185-8 | 8 | 116 | 35.50 | 1254 | 250 | 185 | Direct Drive | DN80 | 4000 | 3450*1880*2120 |
| 2TF185-10 | 10 | 145 | 31.00 | 1095 | ||||||
| 2TF185-13 | 12.5 | 181 | 26.00 | 918 | ||||||
| 2TF200-8 | 8 | 116 | 40.00 | 1413 | 270 | 200 | Direct Drive | DN125 | 5550 | 3820*1980*2210 |
| 2TF200-10 | 10 | 145 | 35.50 | 1254 | ||||||
| 2TF200-13 | 12.5 | 181 | 32.00 | 1130 | ||||||
| 2TF220-8 | 8 | 116 | 45.00 | 1590 | 300 | 220 | Direct Drive | DN125 | 5650 | 3820*1980*2210 |
| 2TF220-10 | 10 | 145 | 40.00 | 1413 | ||||||
| 2TF220-13 | 12.5 | 181 | 35.50 | 1254 | ||||||
| 2TF250-8 | 8 | 116 | 50.00 | 1767 | 350 | 250 | Direct Drive | DN125 | 5950 | 3820*1980*2210 |
| 2TF250-10 | 10 | 145 | 45.00 | 1590 | ||||||
| 2TF250-13 | 12.5 | 181 | 40.00 | 1413 | ||||||
For more information, please contact us.
(TVPM) Two-Stage Permanent Magnet Motor VSD Screw Air Compressor
Kilowatt:22-250kw
Working Pressure:7/8/10/12.5bar
Air Capacity:3.2-55.0m3/min
Power Supply:380V,415V,440V,460V(50/60Hz)
Cooling Method:Air cooling
(TVPM)2-Stage Series Detail Page Jump:
(TVPM)2-Stage Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Transmission | Connection | Net Weight |
Dimension (L*W*H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | inch | kgs | mm | |
| 2TVPM22-7 | 7 | 102 | 4.20 | 148 | 30 | 22 | Direct Drive | Rp1-1/2 | 700 | 1400*880*1350 |
| 2TVPM22-8 | 8 | 116 | 4.10 | 144 | ||||||
| 2TVPM22-10 | 10 | 145 | 3.50 | 123 | ||||||
| 2TVPM22-13 | 12.5 | 181 | 3.20 | 113 | ||||||
| 2TVPM30-7 | 7 | 102 | 6.50 | 229 | 45 | 30 | Direct Drive | Rp1-1/2 | 950 | 1950*1100*1390 |
| 2TVPM30-8 | 8 | 116 | 6.00 | 212 | ||||||
| 2TVPM30-10 | 10 | 145 | 4.90 | 173 | ||||||
| 2TVPM30-13 | 12.5 | 181 | 4.20 | 148 | ||||||
| 2TVPM37-7 | 7 | 102 | 7.20 | 254 | 50 | 37 | Direct Drive | Rp1-1/2 | 950 | 1950*1100*1390 |
| 2TVPM37-8 | 8 | 116 | 6.80 | 240 | ||||||
| 2TVPM37-10 | 10 | 145 | 5.80 | 204 | ||||||
| 2TVPM37-13 | 12.5 | 181 | 5.40 | 190 | ||||||
| 2TVPM45-7 | 7 | 102 | 9.80 | 346 | 60 | 45 | Direct Drive | Rp1-1/2 | 980 | 1950*1100*1390 |
| 2TVPM45-8 | 8 | 116 | 8.20 | 289 | ||||||
| 2TVPM45-10 | 10 | 145 | 7.40 | 261 | ||||||
| 2TVPM45-13 | 12.5 | 181 | 6.60 | 233 | ||||||
| 2TVPM55-7 | 7 | 102 | 12.80 | 452 | 75 | 55 | Direct Drive | DN50 | 1890 | 2590*1500*1640 |
| 2TVPM55-8 | 8 | 116 | 11.60 | 409 | ||||||
| 2TVPM55-10 | 10 | 145 | 11.30 | 399 | ||||||
| 2TVPM55-13 | 12.5 | 181 | 9.00 | 318 | ||||||
| 2TVPM75-7 | 7 | 102 | 17.30 | 611 | 100 | 75 | Direct Drive | DN50 | 1960 | 2590*1500*1640 |
| 2TVPM75-8 | 8 | 116 | 15.60 | 551 | ||||||
| 2TVPM75-10 | 10 | 145 | 11.60 | 409 | ||||||
| 2TVPM75-13 | 12.5 | 181 | 11.30 | 399 | ||||||
| 2TVPM90-7 | 7 | 102 | 20.80 | 735 | 120 | 90 | Direct Drive | DN65 | 2200 | 2990*1700*1963 |
| 2TVPM90-8 | 8 | 116 | 18.50 | 653 | ||||||
| 2TVPM90-10 | 10 | 145 | 15.20 | 537 | ||||||
| 2TVPM90-13 | 12.5 | 181 | 14.50 | 512 | ||||||
| 2TVPM110-7 | 7 | 102 | 24.50 | 865 | 150 | 110 | Direct Drive | DN65 | 2360 | 2990*1700*1963 |
| 2TVPM110-8 | 8 | 116 | 21.00 | 742 | ||||||
| 2TVPM110-10 | 10 | 145 | 18.50 | 653 | ||||||
| 2TVPM110-13 | 12.5 | 181 | 16.00 | 565 | ||||||
| 2TVPM132-7 | 7 | 102 | 30.00 | 1060 | 175 | 132 | Direct Drive | DN65 | 2445 | 2990*1700*1963 |
| 2TVPM132-8 | 8 | 116 | 24.70 | 872 | ||||||
| 2TVPM132-10 | 10 | 145 | 21.30 | 752 | ||||||
| 2TVPM132-13 | 12.5 | 181 | 18.50 | 653 | ||||||
| 2TVPM160-7 | 7 | 102 | 34.50 | 1219 | 200 | 160 | Direct Drive | DN80 | 4000 | 3450*1880*2120 |
| 2TVPM160-8 | 8 | 116 | 31.00 | 1095 | ||||||
| 2TVPM160-10 | 10 | 145 | 26.00 | 918 | ||||||
| 2TVPM160-13 | 12.5 | 181 | 24.70 | 872 | ||||||
| 2TVPM185-7 | 7 | 102 | 41.00 | 1448 | 250 | 185 | Direct Drive | DN80 | 4050 | 3450*1880*2120 |
| 2TVPM185-8 | 8 | 116 | 35.50 | 1254 | ||||||
| 2TVPM185-10 | 10 | 145 | 31.00 | 1095 | ||||||
| 2TVPM185-13 | 12.5 | 181 | 26.00 | 918 | ||||||
| 2TVPM200-7 | 7 | 102 | 43.00 | 1519 | 270 | 200 | Direct Drive | DN125 | 5600 | 3820*1980*2210 |
| 2TVPM200-8 | 8 | 116 | 40.00 | 1413 | ||||||
| 2TVPM200-10 | 10 | 145 | 35.50 | 1254 | ||||||
| 2TVPM200-13 | 12.5 | 181 | 32.00 | 1130 | ||||||
| 2TVPM220-7 | 7 | 102 | 48.60 | 1717 | 300 | 220 | Direct Drive | DN125 | 5700 | 3820*1980*2210 |
| 2TVPM220-8 | 8 | 116 | 45.00 | 1590 | ||||||
| 2TVPM220-10 | 10 | 145 | 40.00 | 1413 | ||||||
| 2TVPM220-13 | 12.5 | 181 | 35.50 | 1254 | ||||||
| 2TVPM250-7 | 7 | 102 | 55.00 | 1943 | 350 | 250 | Direct Drive | DN125 | 6000 | 3820*1980*2210 |
| 2TVPM250-8 | 8 | 116 | 50.00 | 1767 | ||||||
| 2TVPM250-10 | 10 | 145 | 45.00 | 1590 | ||||||
| 2TVPM250-13 | 12.5 | 181 | 40.00 | 1413 | ||||||
For more information, please contact us.
Tank Mounted Air Compressor
JCTG series:
4IN1 Permanent Magnet VSD Screw Air Compressor
Kilowatt:7.5-22kw
Working Pressure:8/10/15bar
Air Capacity:0.9-3.6m3/min
Power Supply:220V,380V,415V,440V(50/60Hz)
Cooling Method:Air cooling
Air Tank Optional:ASME
JCTG Series Detail Page Jump:
product/cdUGMyArbRTF/China-High-Quality-ASME-7-5kw-11kw-15kw-22kw-and-8bar-10bar-15bar-16bar-VSD-Premanent-Magnet-High-Pressure-Electric-AC-All-in-One-Industry-Rotary-Screw-Air-Compressor.html
JCTG 15Bar Series Detail Page Jump:
product/KERpZiUwZecL/China-Hot-Sale-Laser-Cutting-Machine-Used-ASME-CE-Pmvsd-All-in-One-4in1-Energy-Saving-Screw-Air-Compressor.html
JCTG Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Air Tank Capacity |
Connection | Net Weight |
Dimension (L*W*H) |
|||
| — | bar | psig | m3/min | CFM | hp | kw | L | inch | kgs | mm |
| J7.5CTG-8 | 8 | 116 | 1.10 | 38 | 10 | 7.5 | 250 | G3/4″ | 350 | 1430*800*1580 |
| J7.5CTG-10 | 10 | 145 | 0.90 | 31 | ||||||
| J11CTG-8 | 8 | 116 | 1.60 | 56 | 15 | 11 | 400 | G3/4″ | 510 | 1850*950*1870 |
| J11CTG-10 | 10 | 145 | 1.40 | 49 | ||||||
| J15CTG-8 | 8 | 116 | 2.60 | 91 | 20 | 15 | 400 | G3/4″ | 510 | 1850*950*1870 |
| J15CTG-10 | 10 | 145 | 2.00 | 70 | ||||||
| J22CTG-8 | 8 | 116 | 3.60 | 127 | 30 | 22 | 400 | G1″ | 555 | 1850*950*1870 |
| J22CTG-10 | 10 | 145 | 3.00 | 106 | ||||||
15 Bar:
| Model | Max Working Pressure |
Capacity | Capacity | Motor Power | Air Tank Capacity |
Connection | Net Weight |
Dimension (L*W*H) |
||
| — | bar | psig | m3/min | m3/min | hp | kw | L | inch | kgs | mm |
| J11CTG-15 | 15 | 217 | 1.00 | 35 | 15 | 11 | 400 | G3/4″ | 510 | 1850*950*1870 |
| J15CTG-15 | 15 | 217 | 1.60 | 56 | 20 | 15 | 400 | G3/4″ | 510 | 1850*950*1870 |
| J22CTG-15 | 15 | 217 | 2.30 | 81 | 30 | 22 | 400 | G1″ | 555 | 1850*950*1870 |
For more information, please contact us.
Mono phase series:
Mono Phase Permanent Magnet VSD Screw Air Compressor(only air compressor/2IN1 air compressor/4IN1 air compressor)
Kilowatt:3.7-7.5kw
Working Pressure:8/10/12.5bar
Air Capacity:200-980L/min
Power Supply:110V,220V,230V,240V,380V,400V,415V,440V,460V(50/60Hz)
Optional:1ph,3ph
Cooling method:Air cooling
Mono Phase Series Detail Page Jump:
product/hEepIlZKbLWG/China-Single-Phase-Mono-Phase-Screw-Air-Compressor-Best-Selling-Type-Favorable-Price-Safe-and-Reliable.html
(EV/Only Air Compressor)Mono Phase Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Connection | Dimension (L*W*H) |
Air tank | |||
| — | bar | psig | L/min | CFM | hp | kw | inch | mm | L |
| C5EV | 8 | 116 | 200-400 | 7-14 | 5 | 3.7 | G1/2 | 800*540*755 | — |
| 10 | 145 | 175-350 | 6-12 | ||||||
| 12.5 | 182 | 150-300 | 5-10 | ||||||
| C6EV | 8 | 116 | 250-500 | 8-17 | 6 | 4.5 | G1/2 | 800*540*755 | — |
| 10 | 145 | 210-420 | 7-14 | ||||||
| 12.5 | 182 | 180-360 | 6-12 | ||||||
| C7EV | 8 | 116 | 315-630 | 11-22 | 7 | 5.5 | G1/2 | 800*540*755 | — |
| 10 | 145 | 275-550 | 9-19 | ||||||
| 12.5 | 182 | 210-420 | 7-14 | ||||||
| C10EV | 8 | 116 | 490-980 | 17-34 | 10 | 7.5 | G1/2 | 800*560*860 | — |
| 10 | 145 | 450-900 | 15-31 | ||||||
| 12.5 | 182 | 400-800 | 14-28 | ||||||
For more information, please contact us.
(E/2IN1 Air Compressor)Mono Phase Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Connection | Dimension (L*W*H) |
Air tank | |||
| — | bar | psig | L/min | CFM | hp | kw | inch | mm | L |
| C5E | 8 | 116 | 200-400 | 7-14 | 5 | 3.7 | G1/2 | 1571*540*1035 | 100L |
| 10 | 145 | 175-350 | 6-12 | ||||||
| 12.5 | 182 | 150-300 | 5-10 | ||||||
| C6E | 8 | 116 | 250-500 | 8-17 | 6 | 4.5 | G1/2 | 1571*540*1035 | 100L |
| 10 | 145 | 210-420 | 7-14 | ||||||
| 12.5 | 182 | 180-360 | 6-12 | ||||||
| C7E | 8 | 116 | 315-630 | 11-22 | 7 | 5.5 | G1/2 | 1571*540*1035 | 100L |
| 10 | 145 | 275-550 | 9-19 | ||||||
| 12.5 | 182 | 210-420 | 7-14 | ||||||
| C10E | 8 | 116 | 490-980 | 17-34 | 10 | 7.5 | G1/2 | 1060*560*1270 | 160L |
| 10 | 145 | 450-900 | 15-31 | ||||||
| 12.5 | 182 | 400-800 | 14-28 | ||||||
For more information, please contact us.
(EF/4IN1 Air Compressor)Mono Phase Series Technical Parameters:
| Model | Max Working Pressure |
Capacity | Motor Power | Connection | Dimension (L*W*H) |
Air tank | |||
| — | bar | psig | L/min | CFM | hp | kw | inch | mm | L |
| C5EF | 8 | 116 | 200-400 | 7-14 | 5 | 3.7 | G1/2 | 1571*540*1035 | 130L |
| 10 | 145 | 175-350 | 6-12 | ||||||
| 12.5 | 182 | 150-300 | 5-10 | ||||||
| C6EF | 8 | 116 | 250-500 | 8-17 | 6 | 4.5 | G1/2 | 1571*540*1035 | 130L |
| 10 | 145 | 210-420 | 7-14 | ||||||
| 12.5 | 182 | 180-360 | 6-12 | ||||||
| C7EF | 8 | 116 | 315-630 | 11-22 | 7 | 5.5 | G1/2 | 1571*540*1035 | 130L |
| 10 | 145 | 275-550 | 9-19 | ||||||
| 12.5 | 182 | 210-420 | 7-14 | ||||||
| C10EF | 8 | 116 | 490-980 | 17-34 | 10 | 7.5 | G1/2 | 1060*560*1270 | 220L |
| 10 | 145 | 450-900 | 15-31 | ||||||
| 12.5 | 182 | 400-800 | 14-28 | ||||||
For more information, please contact us.
Air Compressor Equipment
Air Dryer:
HDF Series Refrigerated Air Dryer
Watt:220-2900w
Refrigerant:R134A,R410A
Air Capacity:1.0-26.0m3/min
Power Supply:230V(50Hz),1ph
HDF Series Detail Page Jump:
product/HwMfBtuJHlrv/China-Xihu (West Lake) Dis.in-Standard-Type-HDF66-R410A-Industrial-Freeze-Adsorption-Dryer.html
HDF Series Technical Parameters:
| Model | Air Capacity | Refrigerant | Compressor Power |
Power Supply | Air Connection | Net Weight |
Dimension (L*W*H) |
| m³/min | w | V/Ph/Hz | Inch | kgs | mm | ||
| HDF10 | 1.00 | R134A | 220 | 230/1/50 | G3/4” | 30 | 430x354x463 |
| HDF13 | 1.30 | R134A | 360 | 230/1/50 | G3/4” | 36 | 548x400x615 |
| HDF21 | 2.10 | R134A | 370 | 230/1/50 | G3/4” | 38 | 548x400x615 |
| HDF40 | 4.00 | R410A | 700 | 230/1/50 | G1” | 56 | 600x520x750 |
| HDF66 | 6.60 | R410A | 1050 | 230/1/50 | G1 1/2” | 58 | 600x520x750 |
| HDF85 | 8.50 | R410A | 1100 | 230/1/50 | G1 1/2” | 75 | 650x650x875 |
| HDF105 | 10.50 | R410A | 1150 | 230/1/50 | G2” | 79 | 650x650x875 |
| HDF140 | 14.00 | R410A | 1400 | 230/1/50 | G2” | 102 | 752x745x960 |
| HDF175 | 17.50 | R410A | 1650 | 230/1/50 | G2” | 119 | 752x800x1571 |
| HDF220 | 22.00 | R410A | 2650 | 230/1/50 | G2 1/2” | 168 | 927x795x1126 |
| HDF260 | 26.00 | R410A | 2900 | 230/1/50 | G2 1/2” | 174 | 927x795x1126 |
For more information, please contact us.
HDP Series Refrigerated Air Dryer
Watt:434-13697w
Refrigerant:R134A,R410A,R407C
Air Capacity:1.5-150.0m3/min
Power Supply:230V(50Hz),1ph/380V(50Hz),3ph
HDP Series Detail Page Jump:
product/SZvahxErhgYd/China-Compressed-Refrigerated-Air-Dryer-Xihu (West Lake) Dis.in-for-Freeze-Industrial-Factory.html
HDP Series Technical Parameters:
| Model | Air Capacity | Refrigerant | Compressor Power |
Power Supply | Air Connection | Net Weight | Dimension | |
| m³/min | w | V/Ph/Hz | Air cooled | Water cooled | kg | mm | ||
| HDP15 | 1.50 | R134a | 434 | 230/1/50 | G1″ | — | 32 | 550x370x800 |
| HDP21 | 2.10 | R134a | 434 | 230/1/50 | G1″ | — | 36 | 550x370x800 |
| HDP35 | 3.50 | R410A | 1165 | 230/1/50 | G1″ | — | 60 | 520x500x800 |
| HDP45 | 4.50 | R410A | 1240 | 230/1/50 | G1 1/2″ | — | 68 | 550x600x980 |
| HDP60 | 6.00 | R410A | 1240 | 230/1/50 | G1 1/2″ | — | 75 | 550x600x980 |
| HDP75 | 7.50 | R410A | 2058 | 230/1/50 | G2″ | — | 85 | 550x600x980 |
| HDP90 | 9.00 | R410A | 2170 | 230/1/50 | G2″ | — | 120 | 900x750x1000 |
| HDP115 | 11.50 | R410A | 1958 | 230/1/50 | G2 1/2″ | — | 130 | 1571x660x1120 |
| HDP150 | 15.00 | R410A | 2440 | 230/1/50 | G2 1/2″ | — | 135 | 1571x660x1120 |
| HDP175 | 17.50 | R410A | 2870 | 230/1/50 | G2 1/2″ | — | 150 | 1571x660x1120 |
| HDP225 | 22.50 | R410A | 3380 | 230/1/50 | G2 1/2″ | — | 155 | 1571x660x1120 |
| HDP250(A) | 25.00 | R410A | 3850 | 230/1/50 | G2 1/2″ | — | 180 | 1571x660x1120 |
| HDP250(W) | 25.00 | R410A | 3430 | 230/1/50 | G2 1/2″ | G3/4″ | 205 | 1571x660x1120 |
| HDP350(A) | 35.00 | R410A | 4860 | 380/3/50 | DN100 | — | 325 | 1133x1000x1700 |
| HDP350(W) | 35.00 | R410A | 4000 | 380/3/50 | DN100 | G1″ | 325 | 1133x1000x1550 |
| HDP450(A) | 45.00 | R410A | 5626 | 380/3/50 | DN100 | — | 350 | 1133x1000x1700 |
| HDP450(W) | 45.00 | R410A | 4766 | 380/3/50 | DN100 | G1″ | 350 | 1133x1000x1550 |
| HDP500(A) | 50.00 | R410A | 6293 | 380/3/50 | DN100 | — | 350 | 1133x1000x1700 |
| HDP500(W) | 50.00 | R410A | 5433 | 380/3/50 | DN100 | G1″ | 350 | 1133x1000x1550 |
| HDP600(A) | 60.00 | R410A | 9171 | 380/3/50 | DN150 | — | 550 | 1644x1000x1883 |
| HDP600(W) | 60.00 | R410A | 7871 | 380/3/50 | DN150 | G1″ | 550 | 1644x1000x1750 |
| HDP750(A) | 75.00 | R410A | 10069 | 380/3/50 | DN150 | — | 600 | 1644x1000x1883 |
| HDP750(W) | 75.00 | R410A | 8769 | 380/3/50 | DN150 | G1″ | 600 | 1644x1000x1750 |
| HDP1000(A) | 100.00 | R407C | 14398 | 380/3/50 | DN150 | — | 700 | 2100x1150x1900 |
| HDP1000(W) | 100.00 | R407C | 7936 | 380/3/50 | DN150 | DN40 | 700 | 2100x1150x1750 |
| HDP1250W | 125.00 | R407C | 9866 | 380/3/50 | DN150 | DN50 | 750 | 2100x1150x1750 |
| HDP1500W | 150.00 | R407C | 13697 | 380/3/50 | DN200 | DN50 | 850 | 2400x1150x1750 |
| HDP2000W | 200.00 | R407C | 16517 | 380/3/50 | DN200 | DN65 | 950 | 2400x1150x1750 |
For more information, please contact us.
Air Filter:
F Series Line Air Filter
Air Capacity:0.57-46.7m3/min
F Series Detail Page Jump:
product/MwmTqaWuYIYc/China-ATS-Line-Air-Filter-Industrial-Compressor-Parts-with-Element-in-Garment-Factory.html
F Series Technical Parameters:
| Model | Thread Connection | Air Capacity | Dimension(mm) | ||||
| m3/min | CFM | A | B | C | D | ||
| F571 | 1/2″ | 0.57 | 21 | 95 | 220 | 197 | 95 |
| F0571 | 3/4″ | 0.57 | 21 | 95 | 220 | 197 | 95 |
| F0045 | 1/2″ | 1.3 | 45 | 95 | 220 | 197 | 110 |
| F0046 | 3/4″ | 1.3 | 45 | 95 | 220 | 197 | 110 |
| F0070 | 3/4″ | 2 | 70 | 95 | 280 | 257 | 145 |
| F5710 | 3/4″ | 2.8 | 100 | 95 | 280 | 257 | 175 |
| F0125 | 1″ | 3.5 | 125 | 125 | 320 | 290 | 185 |
| F0126 | 1-1/2″ | 3.5 | 125 | 125 | 320 | 290 | 185 |
| F0180 | 1″ | 5.1 | 180 | 125 | 320 | 290 | 185 |
| F0181 | 1-1/2″ | 5.1 | 180 | 125 | 320 | 290 | 185 |
| F0265 | 1-1/2″ | 7.5 | 265 | 125 | 400 | 370 | 230 |
| F571 | 1-1/2″ | 10.5 | 370 | 125 | 400 | 370 | 270 |
| F571 | 2″ | 14.6 | 515 | 170 | 520 | 478 | 390 |
| F 0571 | 2″ | 21.1 | 745 | 170 | 700 | 658 | 570 |
| F0900 | 2-1/2″ | 25.5 | 900 | 200 | 995 | 938 | 570 |
| F 0571 | 3″ | 25.5 | 900 | 200 | 995 | 938 | 570 |
| F1060 | 2-1/2″ | 30 | 1060 | 200 | 995 | 938 | 630 |
| F1061 | 3″ | 30 | 1060 | 200 | 995 | 938 | 630 |
| F1280 | 3″ | 36.3 | 1280 | 200 | 995 | 938 | 700 |
| F1650 | 3″ | 46.7 | 1650 | 200 | 995 | 938 | 700 |
For more information, please contact us.
Buy Compressor,Choose Olymtech!
Inquire to learn more, 24-hour personalized service for you!
| After-sales Service: | 1 Year |
|---|---|
| Warranty: | 1 Year |
| Lubrication Style: | Lubricated/Oil Less/Oil Free |
| Customization: |
Available
|
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|---|
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
|---|
| Payment Method: |
|
|---|---|
|
Initial Payment Full Payment |
| Currency: | US$ |
|---|
| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How are air compressors employed in the petrochemical industry?
Air compressors play a vital role in the petrochemical industry, where they are employed for various applications that require compressed air. The petrochemical industry encompasses the production of chemicals and products derived from petroleum and natural gas. Here’s an overview of how air compressors are utilized in the petrochemical industry:
1. Instrumentation and Control Systems:
Air compressors are used to power pneumatic instrumentation and control systems in petrochemical plants. These systems rely on compressed air to operate control valves, actuators, and other pneumatic devices that regulate processes such as flow control, pressure control, and temperature control. Compressed air provides a reliable and clean source of energy for these critical control mechanisms.
2. Pneumatic Tools and Equipment:
Petrochemical plants often utilize pneumatic tools and equipment for various tasks such as maintenance, repair, and construction activities. Air compressors supply the necessary compressed air to power these tools, including pneumatic drills, impact wrenches, grinders, sanders, and painting equipment. The versatility and convenience of compressed air make it an ideal energy source for a wide range of pneumatic tools used in the industry.
3. Process Air and Gas Supply:
Petrochemical processes often require a supply of compressed air and gases for specific applications. Air compressors are employed to generate compressed air for processes such as oxidation, combustion, and aeration. They may also be used to compress gases like nitrogen, hydrogen, and oxygen, which are utilized in various petrochemical reactions and treatment processes.
4. Cooling and Ventilation:
Petrochemical plants require adequate cooling and ventilation systems to maintain optimal operating conditions and ensure the safety of personnel. Air compressors are used to power cooling fans, blowers, and air circulation systems that help maintain the desired temperature, remove heat generated by equipment, and provide ventilation in critical areas.
5. Nitrogen Generation:
Nitrogen is widely used in the petrochemical industry for applications such as blanketing, purging, and inerting. Air compressors are utilized in nitrogen generation systems, where they compress atmospheric air, which is then passed through a nitrogen separation process to produce high-purity nitrogen gas. This nitrogen is used for various purposes, including preventing the formation of explosive mixtures, protecting sensitive equipment, and maintaining the integrity of stored products.
6. Instrument Air:
Instrument air is essential for operating pneumatic instruments, analyzers, and control devices throughout the petrochemical plant. Air compressors supply compressed air that is treated and conditioned to meet the stringent requirements of instrument air quality standards. Instrument air is used for tasks such as pneumatic conveying, pneumatic actuators, and calibration of instruments.
By employing air compressors in the petrochemical industry, operators can ensure reliable and efficient operation of pneumatic systems, power various tools and equipment, support critical processes, and maintain safe and controlled environments.
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How do you choose the right air compressor for woodworking?
Choosing the right air compressor for woodworking is essential to ensure efficient and effective operation of pneumatic tools and equipment. Here are some factors to consider when selecting an air compressor for woodworking:
1. Required Air Volume (CFM):
Determine the required air volume or cubic feet per minute (CFM) for your woodworking tools and equipment. Different tools have varying CFM requirements, so it is crucial to choose an air compressor that can deliver the required CFM to power your tools effectively. Make sure to consider the highest CFM requirement among the tools you’ll be using simultaneously.
2. Tank Size:
Consider the tank size of the air compressor. A larger tank allows for more stored air, which can be beneficial when using tools that require short bursts of high air volume. It helps maintain a consistent air supply and reduces the frequency of the compressor cycling on and off. However, if you have tools with continuous high CFM demands, a larger tank may not be as critical.
3. Maximum Pressure (PSI):
Check the maximum pressure (PSI) rating of the air compressor. Woodworking tools typically operate within a specific PSI range, so ensure that the compressor can provide the required pressure. It is advisable to choose an air compressor with a higher maximum PSI rating to accommodate any future tool upgrades or changes in your woodworking needs.
4. Noise Level:
Consider the noise level of the air compressor, especially if you’ll be using it in a residential or shared workspace. Some air compressors have noise-reducing features or are designed to operate quietly, making them more suitable for woodworking environments where noise control is important.
5. Portability:
Assess the portability requirements of your woodworking projects. If you need to move the air compressor frequently or work in different locations, a portable and lightweight compressor may be preferable. However, if the compressor will remain stationary in a workshop, a larger, stationary model might be more suitable.
6. Power Source:
Determine the power source available in your woodworking workspace. Air compressors can be powered by electricity or gasoline engines. If electricity is readily available, an electric compressor may be more convenient and cost-effective. Gasoline-powered compressors offer greater flexibility for remote or outdoor woodworking projects where electricity may not be accessible.
7. Quality and Reliability:
Choose an air compressor from a reputable manufacturer known for producing reliable and high-quality equipment. Read customer reviews and consider the warranty and after-sales support offered by the manufacturer to ensure long-term satisfaction and reliability.
8. Budget:
Consider your budget and balance it with the features and specifications required for your woodworking needs. While it’s important to invest in a reliable and suitable air compressor, there are options available at various price points to accommodate different budgets.
By considering these factors and evaluating your specific woodworking requirements, you can choose an air compressor that meets the demands of your tools, provides efficient performance, and enhances your woodworking experience.
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What are the key components of an air compressor system?
An air compressor system consists of several key components that work together to generate and deliver compressed air. Here are the essential components:
1. Compressor Pump: The compressor pump is the heart of the air compressor system. It draws in ambient air and compresses it to a higher pressure. The pump can be reciprocating (piston-driven) or rotary (screw, vane, or scroll-driven) based on the compressor type.
2. Electric Motor or Engine: The electric motor or engine is responsible for driving the compressor pump. It provides the power necessary to operate the pump and compress the air. The motor or engine’s size and power rating depend on the compressor’s capacity and intended application.
3. Air Intake: The air intake is the opening or inlet through which ambient air enters the compressor system. It is equipped with filters to remove dust, debris, and contaminants from the incoming air, ensuring clean air supply and protecting the compressor components.
4. Compression Chamber: The compression chamber is where the actual compression of air takes place. In reciprocating compressors, it consists of cylinders, pistons, valves, and connecting rods. In rotary compressors, it comprises intermeshing screws, vanes, or scrolls that compress the air as they rotate.
5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air. It acts as a buffer, allowing for a steady supply of compressed air during peak demand periods and reducing pressure fluctuations. The tank also helps separate moisture from the compressed air, allowing it to condense and be drained out.
6. Pressure Relief Valve: The pressure relief valve is a safety device that protects the compressor system from over-pressurization. It automatically releases excess pressure if it exceeds a predetermined limit, preventing damage to the system and ensuring safe operation.
7. Pressure Switch: The pressure switch is an electrical component that controls the operation of the compressor motor. It monitors the pressure in the system and automatically starts or stops the motor based on pre-set pressure levels. This helps maintain the desired pressure range in the receiver tank.
8. Regulator: The regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications, ensuring a consistent and safe supply of compressed air.
9. Air Outlet and Distribution System: The air outlet is the point where the compressed air is delivered from the compressor system. It is connected to a distribution system comprising pipes, hoses, fittings, and valves that carry the compressed air to the desired application points or tools.
10. Filters, Dryers, and Lubricators: Depending on the application and air quality requirements, additional components such as filters, dryers, and lubricators may be included in the system. Filters remove contaminants, dryers remove moisture from the compressed air, and lubricators provide lubrication to pneumatic tools and equipment.
These are the key components of an air compressor system. Each component plays a crucial role in the generation, storage, and delivery of compressed air for various industrial, commercial, and personal applications.


editor by CX 2023-11-27
China manufacturer Heavy Duty Offshore/ Onshore Skid Mounted Explosion Proof ATEX Certified Zone 2 Stationary Diesel Engine Direct Driven Rotary Screw Air Compressor for Sale air compressor portable
Product Description
| DENAIR hot sale series diesel portable air compressors | ||||||||||||||||||||
| Model | Machine | Diesel Engine | ||||||||||||||||||
| Free Air Delivery | Normal Working | Dimensions | Weight | Manufacturer | Model | Rated | ||||||||||||||
| Pressure | (without towbar) | power | ||||||||||||||||||
| m3/min | CFM | bar(g) | psig | L*W*H(mm) | kg | KW | ||||||||||||||
| DACY-3.2/8 | 3.40 | 120 | 8 | 116 | 2263*1590*1543 | 9, China Our factory is located in No. 366, YangzhuangBang Street, Pingxing Rd., Xindai Town, HangZhou, ZHangZhoug Province, China Q3: Warranty terms of your machine? Q4: Will you provide some spare parts of the machines? Q5: How long will you take to arrange production? Q6: Can you accept OEM orders?
Are there special considerations for air compressor installations in remote areas?Yes, there are several special considerations to take into account when installing air compressors in remote areas. These areas often lack access to infrastructure and services readily available in urban or well-developed regions. Here are some key considerations: 1. Power Source: Remote areas may have limited or unreliable access to electricity. It is crucial to assess the availability and reliability of the power source for operating the air compressor. In some cases, alternative power sources such as diesel generators or solar panels may need to be considered to ensure a consistent and uninterrupted power supply. 2. Environmental Conditions: Remote areas can present harsh environmental conditions that can impact the performance and durability of air compressors. Extreme temperatures, high humidity, dust, and corrosive environments may require the selection of air compressors specifically designed to withstand these conditions. Adequate protection, insulation, and ventilation must be considered to prevent damage and ensure optimal operation. 3. Accessibility and Transport: Transporting air compressors to remote areas may pose logistical challenges. The size, weight, and portability of the equipment should be evaluated to ensure it can be transported efficiently to the installation site. Additionally, the availability of suitable transportation infrastructure, such as roads or air transportation, needs to be considered to facilitate the delivery and installation process. 4. Maintenance and Service: In remote areas, access to maintenance and service providers may be limited. It is important to consider the availability of trained technicians and spare parts for the specific air compressor model. Adequate planning for routine maintenance, repairs, and troubleshooting should be in place to minimize downtime and ensure the longevity of the equipment. 5. Fuel and Lubricants: For air compressors that require fuel or lubricants, ensuring a consistent and reliable supply can be challenging in remote areas. It is necessary to assess the availability and accessibility of fuel or lubricant sources and plan for their storage and replenishment. In some cases, alternative or renewable fuel options may need to be considered. 6. Noise and Environmental Impact: Remote areas are often characterized by their natural beauty and tranquility. Minimizing noise levels and environmental impact should be a consideration when installing air compressors. Selecting models with low noise emissions and implementing appropriate noise reduction measures can help mitigate disturbances to the surrounding environment and wildlife. 7. Communication and Remote Monitoring: Given the remote location, establishing reliable communication channels and remote monitoring capabilities can be essential for effective operation and maintenance. Remote monitoring systems can provide real-time data on the performance and status of the air compressor, enabling proactive maintenance and troubleshooting. By addressing these special considerations, air compressor installations in remote areas can be optimized for reliable operation, efficiency, and longevity.
How does the horsepower of an air compressor affect its capabilities?The horsepower of an air compressor is a crucial factor that directly impacts its capabilities and performance. Here’s a closer look at how the horsepower rating affects an air compressor: Power Output: The horsepower rating of an air compressor indicates its power output or the rate at which it can perform work. Generally, a higher horsepower rating translates to a greater power output, allowing the air compressor to deliver more compressed air per unit of time. This increased power output enables the compressor to operate pneumatic tools and equipment that require higher air pressure or greater airflow. Air Pressure: The horsepower of an air compressor is directly related to the air pressure it can generate. Air compressors with higher horsepower ratings have the capacity to produce higher air pressures. This is particularly important when operating tools or machinery that require specific air pressure levels to function optimally. For example, heavy-duty pneumatic tools like jackhammers or impact wrenches may require higher air pressure to deliver the necessary force. Air Volume: In addition to air pressure, the horsepower of an air compressor also affects the air volume or airflow it can provide. Higher horsepower compressors can deliver greater volumes of compressed air, measured in cubic feet per minute (CFM). This increased airflow is beneficial when using pneumatic tools that require a continuous supply of compressed air, such as paint sprayers or sandblasters. Duty Cycle: The horsepower rating of an air compressor can also influence its duty cycle. The duty cycle refers to the amount of time an air compressor can operate continuously before it needs to rest and cool down. Higher horsepower compressors often have larger and more robust components, allowing them to handle heavier workloads and operate for longer periods without overheating. This is particularly important in demanding applications where continuous and uninterrupted operation is required. Size and Portability: It’s worth noting that the horsepower rating can also affect the physical size and portability of an air compressor. Higher horsepower compressors tend to be larger and heavier due to the need for more substantial motors and components to generate the increased power output. This can impact the ease of transportation and maneuverability, especially in portable or mobile applications. When selecting an air compressor, it is essential to consider the specific requirements of your intended applications. Factors such as desired air pressure, airflow, duty cycle, and portability should be taken into account. It’s important to choose an air compressor with a horsepower rating that aligns with the demands of the tools and equipment you plan to operate, ensuring optimal performance and efficiency. Consulting the manufacturer’s specifications and guidelines can provide valuable information on how the horsepower rating of an air compressor corresponds to its capabilities and suitability for different tasks.
What is the role of air compressor tanks?Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions: 1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air. 2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment. 3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation. 4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air. 5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor. 6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow. Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.
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