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China best Quality Refrigeration 60HP Scroll Air Compressors R410A Zp725kce-Fwmn-502 12v air compressor

Product Description

 

 

 

R22 50HZ  SPEC.
Model Power(HP) Displacement(m³/h) ARI Weight(KG) Height(MM) (Including shock-absorbing strap)
Capacity(W) Input Power(W)
One-Phase(220V-240V)
ZR28K3-PFJ 2.33 6.83 6900 2520 26 383
ZR34K3-PFJ 2.83 8.02 8200 2540 29 406
ZR34KH-PFJ 2.83 8.02 8200 2540 29 406
ZR36K3-PFJ 3 8.61 8900 2730 29 406
ZR36KH-PFJ 3 8.61 8900 2730 29 406
ZR42K3-PFJ 3.5 9.94 15710 3140 30 419
ZR47K3-PFJ 3.92 11.02 11550 3460 32 436
Three-Phase(380V-420V)
ZR28K3-TFD 2.33 6.83 6900 2140 25 383
ZR34K3-TFD 2.83 8.02 8200 2500 28 406
ZR34KH-TFD 2.83 8.02 8200 2470 28 406
ZR36K3-TFD 3 8.61 8790 2680 29 406
ZR36KH-TFD 3 8.61 8300 2680 28 406
ZR42K3-TFD 3.5 9.94 15710 3100 28 419
ZR47KC-TFD 3.92 11.16 11550 2430 30 436
VR61KF-TFP-542 5.08 14.37 14900 4636 28.5 436
ZR61KC-TFD 5.08 14.37 14600 4430 37 457
ZR61KH-TFD 5.08 14.37 14972 4440 35.9 457
ZR68KC-TFD 5.57 16.18 16900 4950 39 457
ZR72KC-TFD 6 17.06 17700 5200 39 457
ZR81KC-TFD 6.75 19.24 19900 5800 40 462
 
VR94KS-TFP 8 22.14 23300 6750 57 497
VR108KS-TFP 9 25.68 26400 7500 63 552
VR125KS-TFP 10 28.81 31000 9000 63 552
VR144KS-TFP 12 33.22 35000 15710 63 552
VR160KS-TFP 13 36.37 38400 11400 65 572
VR190KS-TFP 15 43.34 46300 13700 66 572
ZR250KC-TWD 20 56.57 60000 17700 142 736
ZR310KC-TWD 25 71.43 74000 22000 160 725
ZR380KC-TWD 30 57.5 92000 26900 176 725
ZR81KC-TFD 6.75 19.24 19900 5800 40 462
 
VR94KS-TFP 8 22.14 23300 6750 57 497
VR108KS-TFP 9 25.68 26400 7500 63 552
VR125KS-TFP 10 28.81 31000 9000 63 552
VR144KS-TFP 12 33.22 35000 15710 63 552
VR160KS-TFP 13 36.37 38400 11400 65 572
VR190KS-TFP 15 43.34 46300 13700 66 572
 
ZR250KC-TWD 20 56.57 60000 17700 142 736
ZR310KC-TWD 25 71.43 74000 22000 160 725
ZR380KC-TWD 30 57.5 92000 26900 176 725

 

TECHNICAL DATA
Model ZB15KQ ZB19KQ ZB21KQ ZB26KQ ZB29KQ ZB38KQ ZB45KQ
ZB15KQE ZB19KQE ZB21KQE ZB26KQE ZB29KQE ZB38KQE ZB45KQE
Motor Type TFD TFD TFD TFD TFD TFD TFD
PFJ PFJ PFJ PFJ PFJ    
Power(HP) 2 2.5 3 3.5 4 5 6
Displacement(m³/h) 5.92 6.8 8.6 9.9 11.4 14.5 17.2
               
Starting Current(LRA)              
TFD 24.5-26 30-32 36-40 41-46 50 58.6-65.5 67-74
PFJ 53-58 56-61 75-82 89-97 113    
               
Rated Load Current(RLA)              
TFD 4.3 4.3 5.7 7.1 7.9 8.9 11.5
PFJ 11.4 12.9 16.4 18.9 19.3    
               
Max. Operating Current(MCC)              
TFD 6 6 8 10 11 12.5 16.1
PFJ 16 18 23 24 27    
Motor Run 40μF/370V 40μF/370V 55μF/370V 60μF/370V 60μF/370V    
Crankcase Heater Power(W) 70 70 70 70 70 70 70
               
Size of Connecting Pipe(INCH)              
Outer Diameter of Wxhaust Pipe 1/2 1/2 1/2 1/2 1/2 1/2 1/2
Outer Diameter of Suction Pipe 3/4 3/4 3/4 3/4 7/8 7/8 7/8
               
Dimensions(MM)              
Length 242 242 243 243 242 242 242
Width 242 242 244 244 242 242 242
Height 383 383 412 425 430 457 457
Foot Bottom Installation Dimensions(Aperture) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5)
Fuel Injection(L) 1.18 1.45 1.45 1.45 1.89 1.89 1.89
               
Weight(KG)              
Net.W 23 25 27 28 37 38 40
Gross.W 26 29 30 31 40 41 44

 

TECHNICAL DATA
Model ZB48KQ ZB58KQ ZB66KQ ZB76KQ ZB88KQ ZB95KQ ZB114KQ
ZB48KQE ZB58KQE ZB66KQE ZB76KQE
Motor Type TFD TFD TFD TFD TFD TFD TFD
             
Power(HP) 7 8 9 10 12 13 15
Displacement(m³/h) 18.8 22.1 25.7 28.8 38.2 36.4 43.4
               
Starting Current(LRA) 101 86-95 100-111 110-118 110-118 140 174
               
Rated Load Current(RLA) 12.1 16.4 17.3 19.2 22.1 22.1 27.1
               
Max. Operating Current(MCC) 17 23 24.2 26.9 31 31 39
Crankcase Heater Power(W) 70 90 90 90 90    
               
Size of Connecting Pipe(INCH)              
Outer Diameter of Wxhaust Pipe 3/4 7/8 7/8 7/8 7/8 7/8 7/8
Outer Diameter of Suction Pipe 7/8 11/8 13/8 13/8 13/8 13/8 13/8
               
Dimensions(MM)              
Length 242 263.6 263.6 263.6 263.6 242 264
Width 242 284.2 284.2 284.2 284.2 285 285
Height 457 477 546.1 546.1 546.1 522 553
Foot Bottom Installation Dimensions(Aperture) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5) 190X190(8.5)
Fuel Injection(L) 1.8 2.51 2.25 3.25 3.25 3.3 3.3
               
Weight(KG)              
Net.W 40 59.87 60.33 65.32 65.32 65 65
Gross.W 44            

Archean refrigeration has been focusing on the refrigeration industry for more than 10 years. The compressors are sold all over the world and have been well received. The company has accumulated strong experience in the compressor market, rich technical support, and a satisfactory one-stop procurement solution. You can rest assured You don’t need to worry about this series, from placing an order to receiving the goods. We provide a complete solution to serve customers well, which is our purpose of hospitality.

 

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Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: Zp725kce-Fwmn-502
Transport Package: Wooden/Cartoon Box
Samples:
US$ 100/Piece
1 Piece(Min.Order)

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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

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.

air compressor

Are there air compressors specifically designed for high-pressure applications?

Yes, there are air compressors specifically designed for high-pressure applications. These compressors are engineered to generate and deliver compressed air at significantly higher pressures than standard air compressors. Here are some key points about high-pressure air compressors:

1. Pressure Range: High-pressure air compressors are capable of producing compressed air at pressures typically ranging from 1000 to 5000 psi (pounds per square inch) or even higher. This is considerably higher than the typical range of 100 to 175 psi for standard air compressors.

2. Construction: High-pressure aircompressors feature robust construction and specialized components to withstand the higher pressures involved. They are designed with reinforced cylinders, pistons, valves, and seals that can handle the increased stress and prevent leaks or failures under high-pressure conditions.

3. Power: Generating high-pressure compressed air requires more power than standard compressors. High-pressure air compressors often have larger motors or engines to provide the necessary power to achieve the desired pressure levels.

4. Applications: High-pressure air compressors are utilized in various industries and applications where compressed air at elevated pressures is required. Some common applications include:

  • Industrial manufacturing processes that involve high-pressure air for operations such as air tools, pneumatic machinery, and equipment.
  • Gas and oil exploration and production, where high-pressure air is used for well drilling, well stimulation, and enhanced oil recovery techniques.
  • Scuba diving and underwater operations, where high-pressure air is used for breathing apparatus and underwater tools.
  • Aerospace and aviation industries, where high-pressure air is used for aircraft systems, testing, and pressurization.
  • Fire services and firefighting, where high-pressure air compressors are used to fill breathing air tanks for firefighters.

5. Safety Considerations: Working with high-pressure air requires adherence to strict safety protocols. Proper training, equipment, and maintenance are crucial to ensure the safe operation of high-pressure air compressors. It is important to follow manufacturer guidelines and industry standards for high-pressure applications.

When selecting a high-pressure air compressor, consider factors such as the desired pressure range, required flow rate, power source availability, and the specific application requirements. Consult with experts or manufacturers specializing in high-pressure compressed air systems to identify the most suitable compressor for your needs.

High-pressure air compressors offer the capability to meet the demands of specialized applications that require compressed air at elevated pressures. Their robust design and ability to deliver high-pressure air make them essential tools in various industries and sectors.

China best Quality Refrigeration 60HP Scroll Air Compressors R410A Zp725kce-Fwmn-502   12v air compressorChina best Quality Refrigeration 60HP Scroll Air Compressors R410A Zp725kce-Fwmn-502   12v air compressor
editor by CX 2023-12-21

China Hot selling 4500W Brushless Oil-Free Industrial LCD Air Compressor with 70L Air Tank Oil-Less Low Noise Professional Air Compressors Gdy-993 best air compressor

Product Description

1500*3W Brushless Air Compressor, Portable Silent Dental Oil Free 110V or 220V with 70L Air Tank 2HP Air Compressor GDY-993

Brushless Compressor Advantage 
 

The complete product line for wood finishing, Decorative, Furniture finishing, Painting industry, Industrial Application, construction industry, Architectural Coating, Scenic Painting, Cosmetic industries, Painting and Sculpture primer Painting jar etc.

A: Mini portable tools, it works anytime anywhere after connecting power without air charging
B: Motor without brush, will decrease lots of frictions, smoothly running, low noise, it’s a large support to stable
C, Motor without brush, will not invite the electro-spark while running, so that get the interferences to wireless remote equip down.
Brushless motor hardly maintaining with oil, if necessary. Only clean little dust, usually, Motor running 10 times cycles more than Brush item.
E: LCD smart setting mode, pressure setting with comparing Brushless motor could be input converted frequency. Will supply correct power as actual request, it saves much cost of poeer consumption.

Main Features:
Use it under the circumstance of without power supply.home decoration,nail gun(instead of gas nail gun),air screwdriver,tyre inflation,dust extraction,ect.

Applicable Industries: Building Material Shops, Home Use, Retail, Construction works , advisor
Name: Brushless Air compressor, industrial air compressor, Oil free piston air compressor
Model: GDY-993
Power Source: AC Power 
Power 4500W
Air Flow: 250L/Min x 3 Times
Air Tank: 70L Alumumium Air tank
Mute: Yes
Voltage: 220V
Certification: CE
Warranty: 1 Year
After-sales Service Provided: Video technical support
N.W: 65KG
Lubrication Style: OIL-LESS

  

 

After-sales Service: Online Service
Warranty: One Year
Lubrication Style: Oil-free
Cooling System: Air Cooling
Cylinder Arrangement: Series Arrangement
Cylinder Position: Horizontal
Samples:
US$ 659/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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air compressor

What are the differences between stationary and portable air compressors?

Stationary and portable air compressors are two common types of air compressors with distinct features and applications. Here are the key differences between them:

1. Mobility:

The primary difference between stationary and portable air compressors is their mobility. Stationary air compressors are designed to be permanently installed in a fixed location, such as a workshop or a factory. They are typically larger, heavier, and not easily movable. On the other hand, portable air compressors are smaller, lighter, and equipped with handles or wheels for easy transportation. They can be moved from one location to another, making them suitable for jobsites, construction sites, and other mobile applications.

2. Power Source:

Another difference lies in the power source used by stationary and portable air compressors. Stationary compressors are usually powered by electricity, as they are designed for continuous operation in a fixed location with access to power outlets. They are connected to the electrical grid or have dedicated wiring. In contrast, portable compressors are available in various power options, including electric, gasoline, and diesel engines. This versatility allows them to operate in remote areas or sites without readily available electricity.

3. Tank Capacity:

Tank capacity is also a distinguishing factor between stationary and portable air compressors. Stationary compressors often have larger storage tanks to store compressed air for extended periods. The larger tanks enable them to deliver a continuous and steady supply of compressed air for longer durations without the need for frequent cycling. Portable compressors, due to their compact size and portability, generally have smaller tank capacities, which may be sufficient for intermittent or smaller-scale applications.

4. Performance and Output:

The performance and output capabilities of stationary and portable air compressors can vary. Stationary compressors are typically designed for high-volume applications that require a consistent and continuous supply of compressed air. They often have higher horsepower ratings, larger motor sizes, and higher air delivery capacities. Portable compressors, while generally offering lower horsepower and air delivery compared to their stationary counterparts, are still capable of delivering sufficient air for a range of applications, including pneumatic tools, inflation tasks, and light-duty air-powered equipment.

5. Noise Level:

Noise level is an important consideration when comparing stationary and portable air compressors. Stationary compressors, being larger and built for industrial or commercial settings, are often equipped with noise-reducing features such as sound insulation and vibration dampening. They are designed to operate at lower noise levels, which is crucial for maintaining a comfortable working environment. Portable compressors, while efforts are made to reduce noise, may produce higher noise levels due to their compact size and portability.

6. Price and Cost:

Stationary and portable air compressors also differ in terms of price and cost. Stationary compressors are generally more expensive due to their larger size, higher power output, and industrial-grade construction. They often require professional installation and may involve additional costs such as electrical wiring and system setup. Portable compressors, being smaller and more versatile, tend to have a lower upfront cost. They are suitable for individual users, contractors, and small businesses with budget constraints or flexible air supply needs.

When selecting between stationary and portable air compressors, it is essential to consider the specific requirements of the intended application, such as mobility, power source availability, air demands, and noise considerations. Understanding these differences will help in choosing the appropriate type of air compressor for the intended use.

air compressor

What is the impact of altitude on air compressor performance?

The altitude at which an air compressor operates can have a significant impact on its performance. Here are the key factors affected by altitude:

1. Decreased Air Density:

As altitude increases, the air density decreases. This means there is less oxygen available per unit volume of air. Since air compressors rely on the intake of atmospheric air for compression, the reduced air density at higher altitudes can lead to a decrease in compressor performance.

2. Reduced Airflow:

The decrease in air density at higher altitudes results in reduced airflow. This can affect the cooling capacity of the compressor, as lower airflow hampers the dissipation of heat generated during compression. Inadequate cooling can lead to increased operating temperatures and potential overheating of the compressor.

3. Decreased Power Output:

Lower air density at higher altitudes also affects the power output of the compressor. The reduced oxygen content in the air can result in incomplete combustion, leading to decreased power generation. As a result, the compressor may deliver lower airflow and pressure than its rated capacity.

4. Extended Compression Cycle:

At higher altitudes, the air compressor needs to work harder to compress the thinner air. This can lead to an extended compression cycle, as the compressor may require more time to reach the desired pressure levels. The longer compression cycle can affect the overall efficiency and productivity of the compressor.

5. Pressure Adjustments:

When operating an air compressor at higher altitudes, it may be necessary to adjust the pressure settings. As the ambient air pressure decreases with altitude, the compressor’s pressure gauge may need to be recalibrated to maintain the desired pressure output. Failing to make these adjustments can result in underinflated tires, improper tool performance, or other issues.

6. Compressor Design:

Some air compressors are specifically designed to handle higher altitudes. These models may incorporate features such as larger intake filters, more robust cooling systems, and adjusted compression ratios to compensate for the reduced air density and maintain optimal performance.

7. Maintenance Considerations:

Operating an air compressor at higher altitudes may require additional maintenance and monitoring. It is important to regularly check and clean the intake filters to ensure proper airflow. Monitoring the compressor’s operating temperature and making any necessary adjustments or repairs is also crucial to prevent overheating and maintain efficient performance.

When using an air compressor at higher altitudes, it is advisable to consult the manufacturer’s guidelines and recommendations specific to altitude operations. Following these guidelines and considering the impact of altitude on air compressor performance will help ensure safe and efficient operation.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China Hot selling 4500W Brushless Oil-Free Industrial LCD Air Compressor with 70L Air Tank Oil-Less Low Noise Professional Air Compressors Gdy-993   best air compressorChina Hot selling 4500W Brushless Oil-Free Industrial LCD Air Compressor with 70L Air Tank Oil-Less Low Noise Professional Air Compressors Gdy-993   best air compressor
editor by CX 2023-12-14