Tag Archives: compressor for well

China Standard Hot Selling S85t Lubricated Diesel Air Compressor 22bar 228kw Water Well Compressors for Sale with Good quality

Product Description

1.  ZEGA air compressors   is relatively affordable and suitable for mid to low end users.
2. Excellent performance in energy conservation, with extremely high stability and reliability.
3. Maintenance is relatively simple, and the maintenance guarantee system is complete, with high quality after-sales service.

 

Detailed Photos

 

 

 

 

 

CHINAMFG screw air compressors have the advantages of high efficiency, stability, and durability, and are widely used in factories, car repair shops, construction sites, and other fields

Product Parameters

 

Model Rated FAD Rated Pressure Engine Air End Weight Dimensions
S60T 18 m3/min 18 bar Yuchai
/162kW
Two
Stage
Compre
-ssion
3050KG 3220x1670x1950mm
S85T 24 m3/min 22 bar Yuchai
/ 228 kW
3450KG 3560×1830×2100 mm
S95T 29 m3/min 24 bar Yuchai
/295kW
4300KG 3950×2000×2550 mm
S100T 31 m3/min 25 bar Xichai
/ 309 kW
4550KG 3950×2000×2550 mm
S125D 36 m3/min 30 bar Cummins
/410kW
5500KG 4220×2000×2300 mm

FAQ

 

1. Are you a trading company or a manufacturer?
We are a professional manufacturer. Our factory mainly produces water well drilling rigs, core drilling rigs, down-the-hole drilling rigs, pile drivers, etc. The products have been exported to hundreds of countries around the world and enjoy a high reputation all over the world.

2.How to inspect the goods?
1) Support customers to come to the factory for on-site inspection.
2) Support customers to designate third-party companies to inspect goods.
3) Support video inspection.

3.How long is your delivery cycle?
1) In the case of stock, we can deliver the machine within 7 days.
2) Under standard production, we can deliver the machine within 15-20 days.
3) In the case of customization, we can deliver the machine within 25-30 days.

4. What’s your terms of payment?
T/T 30% as deposit, and 70% before delivery. We’ll show you the photos of the products and packages before you pay the balance. /* 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: Online Technical Services
Warranty: 1 Year
Lubrication Style: Lubricated
Customization:
Available

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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.

air compressor

What are the energy-saving technologies available for air compressors?

There are several energy-saving technologies available for air compressors that help improve their efficiency and reduce energy consumption. These technologies aim to optimize the operation of air compressors and minimize energy losses. Here are some common energy-saving technologies used:

1. Variable Speed Drive (VSD) Compressors:

VSD compressors are designed to adjust the motor speed according to the compressed air demand. By varying the motor speed, these compressors can match the output to the actual air requirement, resulting in energy savings. VSD compressors are particularly effective in applications with varying air demands, as they can operate at lower speeds during periods of lower demand, reducing energy consumption.

2. Energy-Efficient Motors:

The use of energy-efficient motors in air compressors can contribute to energy savings. High-efficiency motors, such as those with premium efficiency ratings, are designed to minimize energy losses and operate more efficiently than standard motors. By using energy-efficient motors, air compressors can reduce energy consumption and achieve higher overall system efficiency.

3. Heat Recovery Systems:

Air compressors generate a significant amount of heat during operation. Heat recovery systems capture and utilize this wasted heat for other purposes, such as space heating, water heating, or preheating process air or water. By recovering and utilizing the heat, air compressors can provide additional energy savings and improve overall system efficiency.

4. Air Receiver Tanks:

Air receiver tanks are used to store compressed air and provide a buffer during periods of fluctuating demand. By using appropriately sized air receiver tanks, the compressed air system can operate more efficiently. The tanks help reduce the number of starts and stops of the air compressor, allowing it to run at full load for longer periods, which is more energy-efficient than frequent cycling.

5. System Control and Automation:

Implementing advanced control and automation systems can optimize the operation of air compressors. These systems monitor and adjust the compressed air system based on demand, ensuring that only the required amount of air is produced. By maintaining optimal system pressure, minimizing leaks, and reducing unnecessary air production, control and automation systems help achieve energy savings.

6. Leak Detection and Repair:

Air leaks in compressed air systems can lead to significant energy losses. Regular leak detection and repair programs help identify and fix air leaks promptly. By minimizing air leakage, the demand on the air compressor is reduced, resulting in energy savings. Utilizing ultrasonic leak detection devices can help locate and repair leaks more efficiently.

7. System Optimization and Maintenance:

Proper system optimization and routine maintenance are essential for energy savings in air compressors. This includes regular cleaning and replacement of air filters, optimizing air pressure settings, ensuring proper lubrication, and conducting preventive maintenance to keep the system running at peak efficiency.

By implementing these energy-saving technologies and practices, air compressor systems can achieve significant energy efficiency improvements, reduce operational costs, and minimize environmental impact.

air compressor

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.

air compressor

Can air compressors be used for automotive applications?

Yes, air compressors can be used for various automotive applications and are commonly found in automotive repair shops, garages, and even in some vehicles. Here are some automotive applications where air compressors are frequently utilized:

1. Tire Inflation: Air compressors are commonly used to inflate tires in automotive applications. They provide a convenient and efficient way to inflate tires to the recommended pressure, ensuring optimal tire performance, fuel efficiency, and safety.

2. Air Tools: Air compressors power a wide range of pneumatic tools used in automotive repair and maintenance. These tools include impact wrenches, ratchet wrenches, air hammers, pneumatic drills, and sanders. Air-powered tools are favored for their high torque and power-to-weight ratio, making them suitable for heavy-duty automotive tasks.

3. Spray Painting: Air compressors are commonly used in automotive painting applications. They power airbrushes and spray guns that are used to apply paint, primer, and clear coats. Air compressors provide the necessary air pressure to atomize the paint and deliver a smooth and even finish.

4. Brake System Maintenance: Air compressors play a crucial role in maintaining and diagnosing automotive brake systems. They are used to pressurize the brake lines, allowing for proper bleeding of the system and detection of leaks or faults.

5. Suspension Systems: Some automotive suspension systems, such as air suspensions, rely on air compressors to maintain the desired air pressure in the suspension components. The compressor inflates or deflates the suspension as needed to provide a comfortable ride and optimal handling.

6. Cleaning and Dusting: Air compressors are used for cleaning automotive parts, blowing away dust and debris, and drying surfaces. They provide a high-pressure stream of air that effectively cleans hard-to-reach areas.

7. Air Conditioning Systems: Air compressors are a key component in automotive air conditioning systems. They compress and circulate refrigerant, allowing the system to cool and dehumidify the air inside the vehicle.

When using air compressors for automotive applications, it’s important to consider the specific requirements of the task at hand. Ensure that the air compressor has the necessary pressure and capacity to meet the demands of the application. Additionally, use appropriate air hoses, fittings, and tools that are compatible with the compressor’s output.

Overall, air compressors are versatile and valuable tools in the automotive industry, providing efficient power sources for a wide range of applications, from tire inflation to powering pneumatic tools and supporting various automotive systems.

China Standard Hot Selling S85t Lubricated Diesel Air Compressor 22bar 228kw Water Well Compressors for Sale   with Good qualityChina Standard Hot Selling S85t Lubricated Diesel Air Compressor 22bar 228kw Water Well Compressors for Sale   with Good quality
editor by CX 2024-02-09

China Best Sales Luy120d-13 Truck 13 Bar 90 Kw for Well Drilling Motor Driven Screw Air Compressor for Mining air compressor parts

Product Description

Model Name LUY050-7 LUY085-14 LUY100-10 LUY100-12 LUY118-7 LUY120-14 LUY130-13 LUY150-15 LUY160-17 LUY235-9 LUY220-10
Working pressure, bar(psi) 7 (100) 14 (205) 10 (150) 12 (175) 7 (100) 14 (205) 13(190) 15 (220) 17 (250) 8.6 (125) 10 (150)
Flow, l/s|cfm|m3/min 83|177|5 142|300|8.5 167|353|10 167|353|10 197|420|11.8 200|424|12 217|460|13 250|530|15 267|565|16 396|830|23.5 367|780|22
Noise sound level (at 7m distance, dBA ) 70±3 79±3 79±3 79±3 79±3 83±3 83±3 83±3 83±3 79±3 79±3
Fuel tank capacity, l 67 185 120 120 120 180 180 250 250 300 300
Compressor oil capacity, l 8 25 26 26 26 23 30 32 32 55 55
Outlet valves, qty x size 3xG3/4 3xG3/4 1xG1  1/2 3xG3/4 1xG1  1/3 3xG3/4 1xG1  1/4 3xG3/4 1xG1  1/5 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4
Engine exhuast emission           Tier 3 Tier 3 Tier 3 Tier 3 Tier 2 Tier 2
Engine maker Kubota Cummins Cummins Cummins Cummins Yuchai Cummins Yuchai Yuchai Cummins Cummins
Engine model V1505T 4BTAA3.9-C125 YC4A130-H311 YC4A130-H311 YC4A130-H311 YC6J175-H301 QSB5.9-C180-31 YC6A205-H300 YC6A240-H301 6CTA8.3-C260 6CTA8.3-C260
Engine power, Kw 33 93 96 96 96 129 132 151 176 194 194
Norminal engine speed, rpm 2950 2300 2300 2300 2300 2300 2400 2050 1950 2000 2000
Unloading engine speed, rpm 1950 1500 1400 1400 1400 1400 1400 1200 1200 1500 1500
Engine inspiration torbue charger torbue charger torbue charger torbue charger torbue charger torbue torbue torbue torbue torbue torbue
Length, mm 2960 3700 3700 3700 3700 4322 3000 4322 4322 3780 3780
Width, mm 1350 1790 1790 1790 1790 1950 2000 1950 1950 1950 1950
Height, mm 1420 1900 1900 1900 1900 1980 2190 1980 1980 2260 2260
Weight, kg 750 1650 1650 1650 1650 2250 1990 2550 2550 2990 2990

 

Model Name LUY200-10 LUY170-17 LUY180-19 LUY180-20 LUY210-17 LUY230-14 LUY250-12 LUY270-10 LUY290-9 LUY215-21 LUY290-23
Working pressure, bar(psi) 10(150) 17(250) 19 (275) 20(290) 17 (250) 14 (205) 12(175) 10(150) 8.6(125) 21(305) 23(335)
Flow, l/s|cfm|m3/min 336|706|20 286|600|17 300|635|18 300|635|18 350|745|21 386|815|23 417|885|25 450|955|27 486|1571|29 357|760|21.5 486|1571|29
Noise sound level (at 7m distance, dBA ) 79±3 79±3 83±3 83±3 83±3 79±3 79±3 79±3 79±3 79±3 83±3
Fuel tank capacity, l 300 300 300 325 300 470 470 470 470 512 500
Compressor oil capacity, l 55 55 55 60 55 65 65 65 65 75 75
Outlet valves, qty x size 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4 1*G2 1*G3/4
Engine exhuast emission Tier 2 Tier 2 Tier 3 Tier 3 Tier 3 Tier 3 Tier 3 Tier 3 Tier 3 Tier 3 Tier 3
Engine maker Cummins Cummins Yuchai Cummins Yuchai Cummins Cummins Cummins Cummins Cummins Yuchai
Engine model 6CTA8.3-C260 6CTA8.3-C260 YC6A260-H300 QSB6.7-C260-32 YC6A260-H300 QSL8.9-C325-30 QSL8.9-C325-30 QSL8.9-C325-30 QSL8.9-C325-30 QSL8.9-C325-30 YC6MK340-H300
Engine power, Kw 194 194 191 191 191 242 242 242 242 242 250
Norminal engine speed, rpm 2000 2000 1900 2000 1900 2000 2000 2000 2000 2000 1900
Unloading engine speed, rpm 1500 1500 1200 1300 1200 1300 1300 1300 1300 1300 1300
Engine inspiration torbue torbue torbue torbue torbue torbue torbue torbue charger torbue charger torbue charger torbue
Length, mm 3780 3780 4404 4550 4404 5260 5260 5260 5260 5260 3850
Width, mm 1950 1950 1950 1770 1950 1800 1800 1800 1800 2040 2100
Height, mm 2260 2260 2296 2230 2270 2630 2630 2630 2630 2630 2690
Weight, kg 2990 2990 3330 3920 3330 4835 4835 4835 4835 4850 4100

 

 

/* 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: Video Technical Support, Online Support, Spare PAR
Warranty: 1 Year
Lubrication Style: Lubricated
Cooling System: Air Cooling
Power Source: Diesel Engine
Cylinder Position: /
Customization:
Available

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air compressor

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.

air compressor

How are air compressors used in refrigeration and HVAC systems?

Air compressors play a vital role in refrigeration and HVAC (Heating, Ventilation, and Air Conditioning) systems, providing the necessary compression of refrigerant gases and facilitating the heat transfer process. Here are the key ways in which air compressors are used in refrigeration and HVAC systems:

1. Refrigerant Compression:

In refrigeration systems, air compressors are used to compress the refrigerant gas, raising its pressure and temperature. This compressed gas then moves through the system, where it undergoes phase changes and heat exchange to enable cooling or heating. The compressor is the heart of the refrigeration cycle, as it pressurizes and circulates the refrigerant.

2. Refrigeration Cycle:

The compression of refrigerant gas by the air compressor is an essential step in the refrigeration cycle. After compression, the high-pressure, high-temperature gas flows to the condenser, where it releases heat and condenses into a liquid. The liquid refrigerant then passes through an expansion valve or device, which reduces its pressure and temperature. This low-pressure, low-temperature refrigerant then enters the evaporator, absorbing heat from the surrounding environment and evaporating back into a gas. The cycle continues as the gas returns to the compressor for re-compression.

3. HVAC Cooling and Heating:

In HVAC systems, air compressors are used to facilitate cooling and heating processes. The compressor compresses the refrigerant gas, which allows it to absorb heat from the indoor environment in the cooling mode. The compressed gas releases heat in the outdoor condenser unit and then circulates back to the compressor to repeat the cycle. In the heating mode, the compressor reverses the refrigeration cycle, absorbing heat from the outdoor air or ground source and transferring it indoors.

4. Air Conditioning:

Air compressors are an integral part of air conditioning systems, which are a subset of HVAC systems. Compressed refrigerant gases are used to cool and dehumidify the air in residential, commercial, and industrial buildings. The compressor pressurizes the refrigerant, initiating the cooling cycle that removes heat from the indoor air and releases it outside.

5. Compressor Types:

Refrigeration and HVAC systems utilize different types of air compressors. Reciprocating compressors, rotary screw compressors, and scroll compressors are commonly used in these applications. The selection of the compressor type depends on factors such as system size, capacity requirements, efficiency, and application-specific considerations.

6. Energy Efficiency:

Efficient operation of air compressors is crucial for refrigeration and HVAC systems. Energy-efficient compressors help minimize power consumption and reduce operating costs. Additionally, proper compressor sizing and system design contribute to the overall energy efficiency of refrigeration and HVAC systems.

By effectively compressing refrigerant gases and facilitating the heat transfer process, air compressors enable the cooling and heating functions in refrigeration and HVAC systems, ensuring comfortable indoor environments and efficient temperature control.

air compressor

What are the safety considerations when operating an air compressor?

Operating an air compressor requires careful attention to safety to prevent accidents, injuries, and equipment damage. Here are some important safety considerations to keep in mind:

1. Read the Manual: Before operating an air compressor, thoroughly read and understand the manufacturer’s instruction manual. Familiarize yourself with the specific safety guidelines, recommended operating procedures, and any specific precautions or warnings provided by the manufacturer.

2. Proper Ventilation: Ensure that the area where the air compressor is operated has adequate ventilation. Compressed air can produce high levels of heat and exhaust gases. Good ventilation helps dissipate heat, prevent the buildup of fumes, and maintain a safe working environment.

3. Personal Protective Equipment (PPE): Always wear appropriate personal protective equipment, including safety glasses or goggles, hearing protection, and non-slip footwear. Depending on the task, additional PPE such as gloves, a dust mask, or a face shield may be necessary to protect against specific hazards.

4. Pressure Relief: Air compressors should be equipped with pressure relief valves or devices to prevent overpressurization. Ensure that these safety features are in place and functioning correctly. Regularly inspect and test the pressure relief mechanism to ensure its effectiveness.

5. Secure Connections: Use proper fittings, hoses, and couplings to ensure secure connections between the air compressor, air tools, and accessories. Inspect all connections before operation to avoid leaks or sudden hose disconnections, which can cause injuries or damage.

6. Inspect and Maintain: Regularly inspect the air compressor for any signs of damage, wear, or leaks. Ensure that all components, including hoses, fittings, and safety devices, are in good working condition. Follow the manufacturer’s recommended maintenance schedule to keep the compressor in optimal shape.

7. Electrical Safety: If the air compressor is electric-powered, take appropriate electrical safety precautions. Use grounded outlets and avoid using extension cords unless approved for the compressor’s power requirements. Protect electrical connections from moisture and avoid operating the compressor in wet or damp environments.

8. Safe Start-Up and Shut-Down: Properly start and shut down the air compressor following the manufacturer’s instructions. Ensure that all air valves are closed before starting the compressor and release all pressure before performing maintenance or repairs.

9. Training and Competence: Ensure that operators are adequately trained and competent in using the air compressor and associated tools. Provide training on safe operating procedures, hazard identification, and emergency response protocols.

10. Emergency Preparedness: Have a clear understanding of emergency procedures and how to respond to potential accidents or malfunctions. Know the location of emergency shut-off valves, fire extinguishers, and first aid kits.

By adhering to these safety considerations and implementing proper safety practices, the risk of accidents and injuries associated with operating an air compressor can be significantly reduced. Prioritizing safety promotes a secure and productive working environment.

China Best Sales Luy120d-13 Truck 13 Bar 90 Kw for Well Drilling Motor Driven Screw Air Compressor for Mining   air compressor partsChina Best Sales Luy120d-13 Truck 13 Bar 90 Kw for Well Drilling Motor Driven Screw Air Compressor for Mining   air compressor parts
editor by CX 2024-01-17

China Custom Well Sell 45kw 60HP Custom Made Air Compressor for Pneumatic Tools air compressor CHINAMFG freight

Product Description

Well Sell 45kw 60HP Custom Made Air Compressor for Pneumatic Tools

Technical Parameters Of fixed speed screw air compressor:

Model WZS-50AZ
Air Flow/Working pressure
 
6.4m3/min @ 7.5bar
6.1m3/min @ 8.5bar
5.7m3/min @ 10.5bar
5.1m3/min @ 12.5bar
Compression stage Single
Type of Cooling Air Cooling
Exhaust Temperature < ambient temperature +8 degrees
Oil content of discharged air <2ppm
Noise 74±2 dB(A)
Power 380VAC/3phase/50Hz (Adjustable)
Starting way Y-△ start
Driven method Direct-driven
Motor power 37kw/50hp
Dimension 1600*1000*1370mm
Weight 840kg

Catalogue:

WZS- 10AZ 15AZ 20AZ 25AZ 30AZ 50AZ 75AZ 100AZ 125AZ
Air flow/pressure (m³/min/Bar) 1.2/7.5 1.7/7.5 2.4/7.5 3.1/7.5 3.8/7.5 6.4/7.5 10.5/7.5 13.6/7.5 16.3/7.5
1.1/8.5 1.6/8.5 2.2/8.5 2.9/8.5 3.5/8.5 6.1/8.5 9.8/8.5 13.3/8.5 15.0/8.5
0.95/10.5 1.4/10.5 2.0/10.5 2.7/10.5 3.2/10.5 5.7/10.5 8.7/10.5 11.6/10.5 14.6/10.5
0.8/12.5 1.2/12.5 1.7/12.5 2.2/12.5 2.9/12.5 5.1/12.5 7.5/12.5 9.8/12.5 12.3/12.5
Motor Power (kw) 7.5 11 15 18.5 22 37 55 75 90
Horse power (HP) 10 15 20 25 30 50 75 100 125
Dimension Length(mm) 1000 1040 1040 1100 1400 1600 2050 2050 2150
Width (mm) 600 800 800 850 850 1000 1200 1200 1300
Height (mm) 1000 1180 1180 1300 1150 1370 1500 1500 1700
Noise dB(A) 66±2 70±2 70±2 70±2 71±2 74±2 74±2 75±2 75±2
Outlet diameter G3/4 G3/4 G3/4 G11/4 G11/4 G11/2 G2 G2 G2
Weight (kg) 240 400 410 590 620 840 1735 1850 1920

 

WZS- 150AZ/W 180AZ/W 220AZ/W 250AZ/W 300AZ/W 340AZ/W 400AZ/W 480AZ/W 540AZ/W
Air flow/pressure (m³/min/Bar) 20.3/7.5 24.0/7.5 27.0/7.5 32.5/7.5 40.0/7.5 43.5/7.5 50.8/7.5 60.0/7.5 72.0/7.5
19.0/8.5 23.0/8.5 26.5/8.5 31.0/8.5 36.8/8.5 42.0/8.5 48.2/8.5 57.0/8.5 68.0/8.5
17.0/10.5 20.0/10.5 22.5/10.5 28.0/10.5 32.2/10.5 38.8/10.5 42.6/10.5 50.0/10.5 60.5/10.5
14.6/12.5 18.0/12.5 20.1/12.5 25.1/12.5 28.5/12.5 34.6/12.5 39.8/12.5 45.0/12.5 50.5/12.5
Motor Power (kw) 110 132 160 185 220 250 300 350 400
Horse power (HP) 150 180 220 250 300 340 400 480 540
Dimension Length(mm) 2800 2800 2800 2800 2900 2900 4200 4200 4200
Width (mm) 1650 1650 1650 1650 1860 1860 2200 2200 2200
Height (mm) 1850 1850 1850 1850 2000 2000 2150 2150 2150
Noise dB(A) 75±2 75±2 75±2 78±2 78±2 78±2 80±2 82±2 83±2
Outlet diameter DN65 DN65 DN80 DN80 DN100 DN100 DN125 DN125 DN150
Weight (kg) 3030 3130 3210 3470 4500 4600 7000 7500 8100

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).
 

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, otherpayment 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

Thank you very much for viewing this page, and wish you a nice day!

Contacts:Vicky Liu
Mob: -173-1655-1856

Lubrication Style: Oil-less
Cooling System: Air Cooling
Power Source: AC Power
Cylinder Position: Vertical
Structure Type: Closed Type
Installation Type: Stationary Type
Customization:
Available

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air compressor

What are the energy-saving technologies available for air compressors?

There are several energy-saving technologies available for air compressors that help improve their efficiency and reduce energy consumption. These technologies aim to optimize the operation of air compressors and minimize energy losses. Here are some common energy-saving technologies used:

1. Variable Speed Drive (VSD) Compressors:

VSD compressors are designed to adjust the motor speed according to the compressed air demand. By varying the motor speed, these compressors can match the output to the actual air requirement, resulting in energy savings. VSD compressors are particularly effective in applications with varying air demands, as they can operate at lower speeds during periods of lower demand, reducing energy consumption.

2. Energy-Efficient Motors:

The use of energy-efficient motors in air compressors can contribute to energy savings. High-efficiency motors, such as those with premium efficiency ratings, are designed to minimize energy losses and operate more efficiently than standard motors. By using energy-efficient motors, air compressors can reduce energy consumption and achieve higher overall system efficiency.

3. Heat Recovery Systems:

Air compressors generate a significant amount of heat during operation. Heat recovery systems capture and utilize this wasted heat for other purposes, such as space heating, water heating, or preheating process air or water. By recovering and utilizing the heat, air compressors can provide additional energy savings and improve overall system efficiency.

4. Air Receiver Tanks:

Air receiver tanks are used to store compressed air and provide a buffer during periods of fluctuating demand. By using appropriately sized air receiver tanks, the compressed air system can operate more efficiently. The tanks help reduce the number of starts and stops of the air compressor, allowing it to run at full load for longer periods, which is more energy-efficient than frequent cycling.

5. System Control and Automation:

Implementing advanced control and automation systems can optimize the operation of air compressors. These systems monitor and adjust the compressed air system based on demand, ensuring that only the required amount of air is produced. By maintaining optimal system pressure, minimizing leaks, and reducing unnecessary air production, control and automation systems help achieve energy savings.

6. Leak Detection and Repair:

Air leaks in compressed air systems can lead to significant energy losses. Regular leak detection and repair programs help identify and fix air leaks promptly. By minimizing air leakage, the demand on the air compressor is reduced, resulting in energy savings. Utilizing ultrasonic leak detection devices can help locate and repair leaks more efficiently.

7. System Optimization and Maintenance:

Proper system optimization and routine maintenance are essential for energy savings in air compressors. This includes regular cleaning and replacement of air filters, optimizing air pressure settings, ensuring proper lubrication, and conducting preventive maintenance to keep the system running at peak efficiency.

By implementing these energy-saving technologies and practices, air compressor systems can achieve significant energy efficiency improvements, reduce operational costs, and minimize environmental impact.

air compressor

How are air compressors used in refrigeration and HVAC systems?

Air compressors play a vital role in refrigeration and HVAC (Heating, Ventilation, and Air Conditioning) systems, providing the necessary compression of refrigerant gases and facilitating the heat transfer process. Here are the key ways in which air compressors are used in refrigeration and HVAC systems:

1. Refrigerant Compression:

In refrigeration systems, air compressors are used to compress the refrigerant gas, raising its pressure and temperature. This compressed gas then moves through the system, where it undergoes phase changes and heat exchange to enable cooling or heating. The compressor is the heart of the refrigeration cycle, as it pressurizes and circulates the refrigerant.

2. Refrigeration Cycle:

The compression of refrigerant gas by the air compressor is an essential step in the refrigeration cycle. After compression, the high-pressure, high-temperature gas flows to the condenser, where it releases heat and condenses into a liquid. The liquid refrigerant then passes through an expansion valve or device, which reduces its pressure and temperature. This low-pressure, low-temperature refrigerant then enters the evaporator, absorbing heat from the surrounding environment and evaporating back into a gas. The cycle continues as the gas returns to the compressor for re-compression.

3. HVAC Cooling and Heating:

In HVAC systems, air compressors are used to facilitate cooling and heating processes. The compressor compresses the refrigerant gas, which allows it to absorb heat from the indoor environment in the cooling mode. The compressed gas releases heat in the outdoor condenser unit and then circulates back to the compressor to repeat the cycle. In the heating mode, the compressor reverses the refrigeration cycle, absorbing heat from the outdoor air or ground source and transferring it indoors.

4. Air Conditioning:

Air compressors are an integral part of air conditioning systems, which are a subset of HVAC systems. Compressed refrigerant gases are used to cool and dehumidify the air in residential, commercial, and industrial buildings. The compressor pressurizes the refrigerant, initiating the cooling cycle that removes heat from the indoor air and releases it outside.

5. Compressor Types:

Refrigeration and HVAC systems utilize different types of air compressors. Reciprocating compressors, rotary screw compressors, and scroll compressors are commonly used in these applications. The selection of the compressor type depends on factors such as system size, capacity requirements, efficiency, and application-specific considerations.

6. Energy Efficiency:

Efficient operation of air compressors is crucial for refrigeration and HVAC systems. Energy-efficient compressors help minimize power consumption and reduce operating costs. Additionally, proper compressor sizing and system design contribute to the overall energy efficiency of refrigeration and HVAC systems.

By effectively compressing refrigerant gases and facilitating the heat transfer process, air compressors enable the cooling and heating functions in refrigeration and HVAC systems, ensuring comfortable indoor environments and efficient temperature control.

air compressor

What maintenance is required for air compressors?

Maintaining air compressors is essential to ensure their optimal performance, longevity, and safe operation. Regular maintenance helps prevent breakdowns, improves efficiency, and reduces the risk of accidents. Here are some key maintenance tasks for air compressors:

1. Regular Inspection: Perform visual inspections of the air compressor to identify any signs of wear, damage, or leaks. Inspect the compressor, hoses, fittings, and connections for any abnormalities. Pay attention to oil leaks, loose bolts, and worn-out components.

2. Oil Changes: If your air compressor has an oil lubrication system, regular oil changes are crucial. Follow the manufacturer’s recommendations for the frequency of oil changes and use the recommended oil type. Dirty or degraded oil can impact compressor performance and lead to premature wear.

3. Air Filter Cleaning or Replacement: Clean or replace the air filter regularly to ensure proper air intake and prevent contaminants from entering the compressor. Clogged or dirty filters can restrict airflow and reduce efficiency.

4. Drain Moisture: Air compressors produce moisture as a byproduct of the compression process. Accumulated moisture in the tank can lead to rust and corrosion. Drain the moisture regularly from the tank to prevent damage. Some compressors have automatic drains, while others require manual draining.

5. Belt Inspection and Adjustment: If your compressor has a belt-driven system, inspect the belts for signs of wear, cracks, or tension issues. Adjust or replace the belts as necessary to maintain proper tension and power transmission.

6. Tank Inspection: Inspect the compressor tank for any signs of corrosion, dents, or structural issues. A damaged tank can be hazardous and should be repaired or replaced promptly.

7. Valve Maintenance: Check the safety valves, pressure relief valves, and other valves regularly to ensure they are functioning correctly. Test the valves periodically to verify their proper operation.

8. Motor and Electrical Components: Inspect the motor and electrical components for any signs of damage or overheating. Check electrical connections for tightness and ensure proper grounding.

9. Keep the Area Clean: Maintain a clean and debris-free area around the compressor. Remove any dirt, dust, or obstructions that can hinder the compressor’s performance or cause overheating.

10. Follow Manufacturer’s Guidelines: Always refer to the manufacturer’s manual for specific maintenance instructions and recommended service intervals for your air compressor model. They provide valuable information on maintenance tasks, lubrication requirements, and safety precautions.

Regular maintenance is vital to keep your air compressor in optimal condition and extend its lifespan. It’s also important to note that maintenance requirements may vary depending on the type, size, and usage of the compressor. By following a comprehensive maintenance routine, you can ensure the reliable operation of your air compressor and maximize its efficiency and longevity.

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editor by CX 2023-11-18