Product Description

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Product Description

Product ZR series compressor
Model ZR6KCE-TFE-522
Color Black
HP 13HP
Refrigerant R407C
Voltage 380-420V/3PH/50Hz
Weight 35KG
Size 30*30*60 cm

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Product Parameters

Widely used in air conditioning, industrial cold zone and precision air conditioning fields. The capacity range of a single compressor is 5KW-90KW, and it can also be double-parallel and three-parallel
High performance, stable and reliable, low life cycle cost
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Company Profile

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Ā  Ā Ā HangZhou Bingke Technology Co., Ltd.
is mainly engaged in the production of various types of compressors for refrigeration equipments and Heating equipments.Ā 
Ā  Ā  And our business scope mainly includes the manufacturing, sales and after-sales service of various types of compressors.
Ā  Ā  Our products are used in a wide range of applications: commercial air conditioning, heat pumps, Cold storage , transport air conditioning, Refrigerating unit and Industrial cooler.
Ā  Ā  If you do not find the product model you are looking for on our website and brochure, please contact us!

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Packaging & Shipping

By Express, By air, By sea, By truck, By rail…..

you can choose the mode of transportation you want

FAQ

1. What’s your address?
We are in HangZhou, ZheJiang Province, China, near HangZhou. Welcome to our company!

2. I didn’t find the model I was looking for in your store?
Please provide a good model product picture to our sales staff, we will send you the quotation
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3. What is your company’s main product?
Various types of compressors, scroll compressors, rotary compressors, reciprocating compressors and refrigeration accessories

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After-sales Service: Online Service
Lubrication Style: Lubricated
Type: Scroll Compressor
Samples:
US$ 300/Piece
1 Piece(Min.Order)

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Customization:
Available

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Estimated freight per unit.







about shipping cost and estimated delivery time.
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Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

air compressor

What Is the Role of Air Dryers in Scroll Compressor Systems?

Air dryers play a crucial role in scroll compressor systems by removing moisture and contaminants from the compressed air. Here’s a detailed explanation:

Air produced by scroll compressors typically contains moisture, oil vapors, and solid particles. These contaminants can negatively impact the performance and reliability of the compressor system and downstream equipment. Air dryers are specifically designed to address these issues and ensure the delivery of clean and dry compressed air.

The primary roles of air dryers in scroll compressor systems are as follows:

1. Moisture Removal:

Compressed air often contains high levels of moisture, which can lead to various problems. Moisture can cause corrosion in the compressed air system, leading to damage to pipes, valves, and other components. It can also adversely affect the performance of pneumatic tools and equipment. Air dryers remove moisture from the compressed air by employing different drying techniques, such as refrigeration, adsorption, or membrane drying. This helps prevent moisture-related issues and ensures the delivery of dry air to the application.

2. Contaminant Removal:

In addition to moisture, compressed air may contain oil vapors, solid particles, and other contaminants. These contaminants can originate from lubricants used in the compressor, ambient air, or the compressor system itself. Air dryers incorporate features like coalescing filters, activated carbon filters, or desiccant beds to trap and remove these contaminants from the compressed air. By removing contaminants, air dryers help maintain the cleanliness and quality of the compressed air, preventing damage to downstream equipment and ensuring reliable operation.

3. Protection of Equipment:

Air dryers play a vital role in protecting the scroll compressor and downstream equipment. Moisture and contaminants can cause corrosion, fouling, and wear in the compressor, valves, air tools, and other components. By removing moisture and contaminants, air dryers help extend the lifespan of the compressor and reduce the risk of equipment failures, downtime, and costly repairs. They also contribute to improved performance and efficiency of pneumatic equipment.

4. Enhanced Product Quality:

In applications where compressed air comes into direct contact with products, such as in food and beverage processing or pharmaceutical manufacturing, air quality is critical. Contaminated or moist compressed air can compromise product quality, contaminate sensitive processes, or pose health risks. Air dryers ensure that the compressed air used in these applications meets the required quality standards, contributing to the production of high-quality and safe products.

5. Energy Efficiency:

By removing moisture and contaminants from the compressed air, air dryers contribute to improved energy efficiency of the scroll compressor system. Moisture in the compressed air can cause pressure drops and increase the energy consumption of pneumatic equipment. Dry and clean compressed air reduces the load on the system and allows for more efficient operation, resulting in energy savings and reduced operational costs.

It’s important to select the appropriate type and capacity of air dryer based on the specific requirements of the scroll compressor system. Factors such as the desired level of air quality, flow rate, operating conditions, and the type of contaminants present should be considered when choosing an air dryer.

In summary, air dryers play a vital role in scroll compressor systems by removing moisture and contaminants from the compressed air. They contribute to improved performance, reliability, and energy efficiency of the compressor system, as well as protect downstream equipment and ensure the delivery of clean and dry compressed air for various applications.

air compressor

How Do You Troubleshoot Common Issues with Scroll Compressors?

Troubleshooting common issues with scroll compressors involves a systematic approach to identify and address potential problems. Here’s a detailed explanation:

1. Gather Information:

Collect relevant information about the scroll compressor and the symptoms of the issue. This includes understanding the compressor model, its operating conditions, and any abnormal behavior or performance changes.

2. Check Power Supply:

Ensure that the scroll compressor has a proper power supply. Check for electrical issues such as tripped circuit breakers, blown fuses, loose connections, or voltage fluctuations. Verify that the compressor is receiving the correct voltage and that all electrical components are functioning correctly.

3. Inspect for Refrigerant Leaks:

Perform a visual inspection for any signs of refrigerant leaks. Look for oil stains, frost accumulation, or hissing sounds indicating a leak. Use a leak detection tool or soapy water solution to pinpoint the exact location of the leak. Repair any leaks and recharge the refrigerant as necessary.

4. Check Airflow and Filters:

Inspect the airflow system, including filters, ducts, and vents. Ensure that air filters are clean and not obstructed, allowing proper airflow to the compressor. Clean or replace dirty filters as needed. Verify that the supply and return vents are open and unobstructed.

5. Monitor Operating Temperatures:

Monitor the operating temperatures of the scroll compressor. Use a thermometer or infrared temperature gun to measure the temperatures at various points, such as the suction line and discharge line. Compare the readings to the manufacturer’s specifications to identify any abnormal temperature differentials.

6. Verify Pressure Readings:

Check the pressure readings of the scroll compressor using a pressure gauge. Measure the suction pressure and discharge pressure and compare them to the recommended operating range. Deviations from the normal range may indicate issues such as a refrigerant undercharge or overcharge, a faulty valve, or a restriction in the system.

7. Inspect Motor and Bearings:

Examine the motor and bearings of the scroll compressor. Check for any signs of overheating, excessive vibration, or unusual noise. Inspect the motor windings for any visible damage or discoloration. Lubricate bearings (if applicable) according to the manufacturer’s recommendations.

8. Review System Controls and Sensors:

Review the system controls, including thermostats, pressure switches, and safety sensors. Ensure that these components are functioning correctly and calibrated properly. Replace any faulty or malfunctioning controls or sensors.

9. Consult Manufacturer Documentation:

Refer to the manufacturer’s documentation, including the user manual, troubleshooting guides, and technical specifications. These resources provide specific troubleshooting steps and recommendations for common issues related to the scroll compressor model.

10. Seek Professional Assistance:

If troubleshooting steps do not resolve the issue or if the problem involves complex repairs or refrigerant handling, it is advisable to seek assistance from qualified HVAC professionals. They have the expertise and specialized equipment to diagnose and repair scroll compressor issues safely and efficiently.

Remember, troubleshooting scroll compressors should be conducted by individuals with appropriate knowledge and experience. Always prioritize safety and follow the manufacturer’s guidelines and safety procedures when working with scroll compressors.

air compressor

How Do Scroll Compressors Compare to Piston Compressors?

When comparing scroll compressors to piston compressors, several factors come into play. Here’s a detailed explanation:

1. Design and Operation:

Scroll compressors and piston compressors have different designs and operating principles. Scroll compressors utilize two interlocking spiral-shaped scrolls to compress the refrigerant or gas. The scroll motion creates a continuous compression process with minimal pulsations. On the other hand, piston compressors use a reciprocating piston driven by a crankshaft to compress the refrigerant or gas. The piston motion generates pulsations during compression.

2. Efficiency:

Scroll compressors are generally more efficient than piston compressors. The continuous compression process of scroll compressors, along with minimal clearance volume, reduces energy losses and improves overall efficiency. In contrast, piston compressors experience more energy losses due to the reciprocating motion and clearance volume. Scroll compressors are known for higher part load efficiency, especially when equipped with variable speed drive (VSD) technology.

3. Noise and Vibration:

Scroll compressors tend to operate with lower noise and vibration levels compared to piston compressors. The interlocking scroll motion in scroll compressors creates a smooth compression process with reduced pulsations, resulting in quieter operation. Piston compressors, on the other hand, generate more noise and vibration due to the reciprocating motion and pulsations during compression.

4. Size and Compactness:

Scroll compressors are generally more compact than piston compressors. The absence of reciprocating parts in scroll compressors allows for a more compact design, making them suitable for applications where space is limited. Piston compressors, with their reciprocating motion and larger size, require more space for installation.

5. Reliability and Maintenance:

Scroll compressors offer enhanced reliability and require less maintenance compared to piston compressors. Scroll compressors have fewer moving parts, such as valves and piston rings, which reduces the chances of failure or breakdown. Piston compressors, with their more complex design and wearing components, may require more frequent maintenance and have a higher probability of mechanical issues.

6. Capacity and Load Handling:

Piston compressors are generally more suitable for applications with varying load demands. Piston compressors can handle a wider range of capacities and adapt to varying cooling or heating loads. Scroll compressors, while capable of modulation with VSD, may have limitations in extreme load turndown situations.

7. Cost:

The cost of scroll compressors and piston compressors can vary depending on factors such as capacity, brand, and features. In general, scroll compressors tend to be more expensive than piston compressors due to their higher efficiency, quieter operation, and compactness. However, the price difference may vary based on specific models and market conditions.

It’s important to note that the suitability of scroll compressors or piston compressors depends on the specific application requirements, load profile, and other factors. Both types of compressors have their advantages and disadvantages, and the choice between them should be based on a thorough analysis of the application needs.

In summary, scroll compressors offer advantages such as higher efficiency, quieter operation, compactness, and enhanced reliability. Piston compressors, on the other hand, may be more suitable for applications with varying load demands. Factors such as efficiency, noise, size, reliability, load handling, and cost should be considered when comparing scroll compressors to piston compressors.

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editor by CX 2024-04-26

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