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China Good quality Quick Freezing Refrigeration Equipment Air Compressor with R404A Coldroom air compressor for sale

Product Description

As professional AC manufactory, we have large stock about different famous in warehouse with perfect good price.Also we export wholesale compressor business overseas for many years. We can offer competitive price and good service. Hope we can your good supplier in China in future.

Refrigerant Typical Model Output       (HP) Power Source Nominal Capacity Input Current    (A) COP      (w/w) Displacement   (cm)
(KW) (BTU/U)
R407C JT90GBBV1L 3 1Φ 220V/50Hz 8.49 28980 2.73 12.7 3.11 45.8
JT90GBBY1L 3 3Φ 380V/50hz 8.49 28980 2.65 4.6 3.2 45.8
JT95GBBV1L 3 1Φ 220V/50Hz 9.16 31270 2.95 13.6 3.11 49.4
JT95GBBY1L 3 3Φ 380V/50hz 9.16 31270 2.86 4.9 3.2 49.4
JT125GBBY1L 4 3Φ 380V/50hz 11.8 45710 3.69 6.3 3.2 63.2
JT160GBBY1L 5 3Φ 380V/50hz 14.7 50180 4.6 7.95 3.2 79.2
JT170GBBY1L 5.5 3Φ 380V/50hz 15.7 53600 4.91 8.5 3.2 84
JT300DA-Y1L 10 3Φ 380V/50hz 29.9 157150 9.45 16.2 3.16 163
JT335DA-Y1L 12 3Φ 380V/50hz 34 116050 10.7 18.1 3.18 184.2
R410A JT90G-P8V1N 3 1Φ 220-230V/50Hz 8.54 29150 2.95 13.2 2.89 33.1
JT125G-P8V1 4 1Φ 220-240V/50Hz 11.8 45710 4.08 19.9 2.89 46
JT90G-P8Y1 3 3Φ 380-415V/50hz 8.54 29150 2.83 4.7 3.01 33.1
JT125G-P8Y1 4 3Φ 380-415V/50hz 11.8 45710 3.93 6.5 3 46
JT160G-P8Y1 5 3Φ 380-415V/50hz 14.9 50860 4.88 8.3 3.06 56.8
JT170G-P8Y1 5.5 3Φ 380-415V/50hz 15.91 54300 5.2 8.9 3.06 60.5
R22 JT125BCBY1L 4 3Φ 380v/50hz 11.9 40620 3.8 7 3.13 67
JT160BCBY1L 5 3Φ 380v/50hz 15 51200 4.66 8.6 3.22 83.1
JT90GABV1L 3 1Φ 220V/50Hz 8.41 28710 2.56 11.9 3.3 45.8
JT90GABY1L 3 3Φ 380v/50hz 8.41 28710 2.47 4.36 3.4 45.8
JT95GABV1L 3 1Φ 220V/50Hz 9.07 30960 2.75 12.8 3.3 49.4
JT95GABY1L 3 3Φ 380v/50hz 9.07 30960 2.67 4.62 3.4 49.4
JT125GABY1L 4 3Φ 380v/50hz 11.7 39940 3.44 6 3.4 63.2
JT160GABY1L 5 3Φ 380v/50hz 14.6 49830 4.3 7.5 3.4 79.2
JT170GABY1L 5.5 3Φ 380v/50hz 15.6 53250 4.59 8.1 3.4 84
JT212D-Y1L 7 3Φ 380v/50hz 21.5 73390 6.49 11.2 3.31 117.3
JT236D-Y1L 7.5 3Φ 380v/50hz 24 81920 7.2 12.3 3.33 131
JT265D-Y1L 8 3Φ 380v/50hz 26.7 91140 7.95 13.6 3.36 144.7
JT300D-Y1L 10 3Φ 380v/50hz 29.9 157150 8.85 15 3.38 163
JT315D-Y1L 11 3Φ 380v/50hz 31.1 106160 9.15 15.5 3.4 169.5
JT335D-Y1L 12 3Φ 380v/50hz 34 116050 9.98 17 3.41 184.2
Multi-paralleled Scroll Compressor                
JT212D-TY1L 7 3Φ 380v/50hz 21.5 73380 6.49 11.2 3.31 117.3
JT236D-TY1L 7.5 3Φ 380v/50hz 24 81920 7.2 12.3 3.33 131
JT265D-TY1L 8 3Φ 380v/50hz 26.7 91130 7.95 13.6 3.36 144.7
JT300D-TY1L 10 3Φ 380v/50hz 29.9 157150 8.85 15 3.38 163
JT335D-TY1L 12 3Φ 380v/50hz 34 116050 9.98 17 3.41 184.2

MAIN PRIDUCTS

 

OUR COMPANY

 

CERTIFICATE

 

After-sales Service: 1 Year
Warranty: 12month
Lubrication Style: Lubricated
Cooling System: Air Cooling
Refrigerant Type: Freon
Structure: Closed Type
Customization:
Available

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air compressor

What is the impact of humidity on compressed air quality?

Humidity can have a significant impact on the quality of compressed air. Compressed air systems often draw in ambient air, which contains moisture in the form of water vapor. When this air is compressed, the moisture becomes concentrated, leading to potential issues in the compressed air. Here’s an overview of the impact of humidity on compressed air quality:

1. Corrosion:

High humidity in compressed air can contribute to corrosion within the compressed air system. The moisture in the air can react with metal surfaces, leading to rust and corrosion in pipes, tanks, valves, and other components. Corrosion not only weakens the structural integrity of the system but also introduces contaminants into the compressed air, compromising its quality and potentially damaging downstream equipment.

2. Contaminant Carryover:

Humidity in compressed air can cause carryover of contaminants. Water droplets formed due to condensation can carry particulates, oil, and other impurities present in the air. These contaminants can then be transported along with the compressed air, leading to fouling of filters, clogging of pipelines, and potential damage to pneumatic tools, machinery, and processes.

3. Decreased Efficiency of Pneumatic Systems:

Excessive moisture in compressed air can reduce the efficiency of pneumatic systems. Water droplets can obstruct or block the flow of air, leading to decreased performance of pneumatic tools and equipment. Moisture can also cause problems in control valves, actuators, and other pneumatic devices, affecting their responsiveness and accuracy.

4. Product Contamination:

In industries where compressed air comes into direct contact with products or processes, high humidity can result in product contamination. Moisture in compressed air can mix with sensitive products, leading to quality issues, spoilage, or even health hazards in industries such as food and beverage, pharmaceuticals, and electronics manufacturing.

5. Increased Maintenance Requirements:

Humidity in compressed air can increase the maintenance requirements of a compressed air system. Moisture can accumulate in filters, separators, and other air treatment components, necessitating frequent replacement or cleaning. Excessive moisture can also lead to the growth of bacteria, fungus, and mold within the system, requiring additional cleaning and maintenance efforts.

6. Adverse Effects on Instrumentation:

Humidity can adversely affect instrumentation and control systems that rely on compressed air. Moisture can disrupt the accuracy and reliability of pressure sensors, flow meters, and other pneumatic instruments, leading to incorrect measurements and control signals.

To mitigate the impact of humidity on compressed air quality, various air treatment equipment is employed, including air dryers, moisture separators, and filters. These devices help remove moisture from the compressed air, ensuring that the air supplied is dry and of high quality for the intended 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

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.

China Good quality Quick Freezing Refrigeration Equipment Air Compressor with R404A Coldroom   air compressor for saleChina Good quality Quick Freezing Refrigeration Equipment Air Compressor with R404A Coldroom   air compressor for sale
editor by CX 2023-10-30