Product Description
Screw type air compressor structure of a unique design, a compact, stylish appearance, high efficiency, small energy consumption, low noise characteristics and long life, is a smart environment-friendly products. Widely applied in metallurgy, machinery, chemicals, and mining, and electric power industries of the ideal gas source equipment.
Advantage:
1.The third generation of advanced rotor and concise intake control system
2.Efficient centrifugal separator oil and gas, gas oil content is small,tube and core of long life .
3. Efficient, low noise suction fan of the full use of export dynamic pressure increased effect of heat transfer (air-cooled)
4. Automatic water-cooling system for large air compressor to provide more efficient
5.Fault diagnosis system, the control panel is easy to operate
6. Removable door, equipment maintenance, service convenient
7.Micro-electronic processing so that temperature, pressure and other parameters are closely monitored .
Technical Parameters:
Model | Discharge Pressure | Discharge Air Volume | Motor Power | Noise | Dimension(mm) | Discharge Pipc.Dia | Unit Weight |
DEF330W | 0.75MPa | 9.15m³/min | 55KW | 80±3 | 2100x1500x1790 | G1-1/2 | 2600KG |
0.85MPa | 9.11m³/min | ||||||
1.05MPa | 7.98m³/min | ||||||
DEF450W | 0.75MPa | 12.51m³/min | 75KW | 80±3 | 2300x1600x1790 | DN50 | 2800KG |
0.85MPa | 11.60m³/min | ||||||
1.05MPa | 10.81m³/min | ||||||
DEF505W | 0.75MPa | 13.39m³/min | 90KW | 80±3 | 2300x1600x1790 | DN50 | 3400KG |
0.85MPa | 13.37m³/min | ||||||
1.05MPa | 12.41m³/min | ||||||
DEF710W | 0.75MPa | 19.96m³/min | 110KW | 82±3 | 2800x1800x1860 | DN65 | 3450KG |
0.85MPa | 18.74m³/min | ||||||
1.05MPa | 16.40m³/min | ||||||
DEF780W | 0.75MPa | 23.58m³/min | 132KW | 82±3 | 2800x1800x1860 | DN65 | 3550KG |
0.85MPa | 22.13m³/min | ||||||
1.05MPa | 19.89m³/min | ||||||
DEF950W | 0.75MPa | 26.85m³/min | 160KW | 82±3 | 2800x1800x1860 | DN65 | 3950KG |
0.85MPa | 25.47m³/min | ||||||
1.05MPa | 23.51m³/min | ||||||
DEF1060W | 0.75MPa | 29.73m³/min | 185KW | 82±3 | 2800x1800x1860 | DN65 | 4500KG |
0.85MPa | 29.65m³/min | ||||||
1.05MPa | 26.79m³/min | ||||||
DEF1180W | 0.75MPa | 33.49m³/min | 200KW | 85±3 | 3100x2150x2200 | DN100 | 5000KG |
0.85MPa | 33.35m³/min | ||||||
1.05MPa | 29.89m³/min | ||||||
DEF1270W | 0.75MPa | 35.97m³/min | 220KW | 85±3 | 3100x2150x2200 | DN100 | 5200KG |
0.85MPa | 35.92m³/min | ||||||
1.05MPa | 33.28m³/min | ||||||
DEF1510W | 0.75MPa | 42.85m³/min | 250KW | 85±3 | 3100x2150x2200 | DN100 | 6400KG |
0.85MPa | 42.66m³/min | ||||||
1.05MPa | 38.3m³/min | ||||||
DEF1650W | 0.75MPa | 46.73m³/min | 280KW | 85±3 | 3400x2400x2200 | DN100 | 6400KG |
0.85MPa | 45.64m³/min | ||||||
1.05MPa | 42.61m³/min | ||||||
DEF1815W | 0.75MPa | 51.41m³/min | 315KW | 90±3 | 3400x2400x2200 | DN100 | 6400KG |
0.85MPa | 51.25m³/min | ||||||
1.05MPa | 46.47m³/min | ||||||
DEF2060W | 0.75MPa | 58.44m³/min | 355KW | 90±3 | 3400x2400x2200 | DN100 | 6400KG |
0.85MPa | 57.89m³/min | ||||||
1.05MPa | 50.99m³/min |
PRODUCT HIGHLIGHTS
1.Clean air 100% oil-free, class 0 oil free air according to ISO8537-1
2.Technology patent used in oil free compressed air system
3.Significant energy saving, environmental-friendly and pollution-free
4.Low operation and maintenance cost
5.Powerful MAM microcomputer controller and touch screen
6.Designed especially for medical, pharmacy, instrument, coating, chemical industry and food processing, etc.
Product Applications:
Our Exhibition
Our service
1.Pre-sale service:
Act as a good adviser and assistant of clients enable them to get rich and generous returns on their investments .
1.Select equipment model.
2.Design and manufacture products according to client’s special requirement ;
3.Train technical personnel for clients .
2.Services during the sale:
1.Pre-check and accept products ahead of delivery .
2. Help clients to draft solving plans .
3.After-sale services:
Provide considerate services to minimize clients’ worries.
1.Complete After-sales service,professional engineers available to service machinery at home or oversea.
2. 24 hours technical support by e-mail.
3.Other essential technological service.
Contact details:
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Lubrication Style: | Oil-free |
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Cooling System: | Water Cooling |
Power Source: | DC Power |
Cylinder Position: | Vertical |
Structure Type: | Closed Type |
Installation Type: | Stationary Type |
Customization: |
Available
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How Do Water-Lubricated Air Compressors Impact Compressed Air Quality?
Water-lubricated air compressors can have an impact on the quality of the compressed air they produce. Here’s a detailed explanation of how water-lubricated air compressors can affect compressed air quality:
Moisture Content:
- Condensation: Water-lubricated compressors introduce moisture into the compressed air system. During the compression process, as the air cools downstream, moisture can condense and accumulate. This moisture can lead to issues such as corrosion, rust, and contamination of downstream equipment or processes.
- Water Carryover: If the compressor’s water separation mechanisms are not efficient or if there are malfunctions in the water removal systems, water droplets or mist may carry over into the compressed air. This can negatively impact the quality of the compressed air and introduce moisture-related issues downstream.
Contamination:
- Oil Contamination: In some water-lubricated compressors, there is a potential for oil to mix with the water used for lubrication. If oil and water emulsify or if there are leaks in the compressor system, oil contamination may occur. Oil-contaminated compressed air can have adverse effects on downstream processes, equipment, and products. It can lead to contamination, reduced performance of pneumatic components, and potential health and safety concerns.
- Particulate Contamination: Water-lubricated compressors can introduce particulate matter, such as sediment, debris, or rust, into the compressed air system. This can occur if the water supply or water treatment systems are not adequately filtered or maintained. Particulate contamination can clog or damage pneumatic equipment, affect product quality, and cause operational issues in downstream applications.
Preventive Measures:
- Water Separation: Water-lubricated compressors employ various water separation mechanisms to remove moisture from the compressed air. This includes moisture separators, water traps, or coalescing filters that are specifically designed to capture and remove water droplets or mist from the compressed air stream. Regular maintenance and inspection of these separation systems are necessary to ensure their proper functioning.
- Air Treatment: Additional air treatment components, such as air dryers or desiccant systems, can be installed downstream of water-lubricated compressors to further reduce moisture content in the compressed air. These systems help to remove moisture that may have carried over from the compressor and ensure that the compressed air meets the required dryness standards for specific applications.
- Proper Maintenance: Regular maintenance of water-lubricated compressors is essential to minimize the potential impact on compressed air quality. This includes routine inspection, cleaning, and replacement of filters, lubrication systems, and water separation components. Addressing any leaks, malfunctioning components, or system issues promptly can help maintain the integrity of the compressed air and prevent contamination or excessive moisture levels.
By implementing appropriate water separation mechanisms, air treatment systems, and maintenance practices, the impact of water-lubricated air compressors on compressed air quality can be minimized. It is important to consider the specific requirements of the application and follow industry standards and guidelines to ensure the desired compressed air quality is achieved.
How Do Water-Lubricated Air Compressors Compare in Terms of Maintenance Costs?
When comparing water-lubricated air compressors to other types of compressors, there are several factors that can influence the maintenance costs. Here’s a detailed explanation of how water-lubricated air compressors compare in terms of maintenance costs:
Initial Investment:
- Higher Initial Cost: Water-lubricated air compressors tend to have a higher initial cost compared to oil-lubricated compressors. This is primarily due to the additional components required for the water-lubrication system, such as water pumps, filters, and separators. The higher initial investment can impact the overall cost of the compressor system.
Lubrication System Maintenance:
- Water Treatment and Filtration: Water-lubricated compressors may require additional maintenance for water treatment and filtration systems. Regular monitoring, maintenance, and replacement of filters or treatment media are necessary to ensure the water quality remains suitable for lubrication. The cost of water treatment and filtration maintenance should be considered in the overall maintenance costs.
- Water Quality Monitoring: Monitoring the quality of the water used in water-lubricated compressors is crucial. This may involve periodic water analysis, temperature monitoring, and water chemistry checks. The cost of water quality monitoring should be factored into the maintenance costs.
Component Lifespan and Replacement:
- Extended Component Lifespan: Proper water-lubrication and cooling can contribute to the extended lifespan of compressor components. Reduced friction, effective cooling, and contaminant control can minimize wear and damage to components, leading to lower replacement costs over time. Water-lubricated compressors may have advantages in terms of component longevity, potentially reducing the frequency of component replacements.
Corrosion Prevention:
- Corrosion Protection Measures: Water-lubricated compressors require corrosion prevention measures due to the presence of water within the system. Corrosion-resistant materials, coatings, or regular maintenance procedures are necessary to prevent corrosion-related issues. The cost of implementing and maintaining corrosion protection measures should be considered in the overall maintenance costs.
Overall, the maintenance costs of water-lubricated air compressors can vary depending on factors such as the specific design and components of the compressor, the quality of the water used, the effectiveness of water treatment and filtration systems, and the implementation of corrosion prevention measures. While water-lubricated compressors may have higher initial costs and additional maintenance requirements, they can potentially offer advantages in terms of extended component lifespan, reduced component replacements, and effective lubrication. It is important to consider these factors and consult the manufacturer’s guidelines to accurately assess the maintenance costs associated with water-lubricated air compressors.
How Do Water-Lubricated Air Compressors Compare to Oil-Lubricated Ones?
Water-lubricated air compressors and oil-lubricated air compressors have distinct differences in terms of lubrication method, performance, maintenance, and environmental impact. Here is a detailed comparison between the two:
Water-Lubricated Air Compressors | Oil-Lubricated Air Compressors | |
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Lubrication Method | Water is used as the lubricant in water-lubricated compressors. It provides lubrication and heat dissipation. | Oil is used as the lubricant in oil-lubricated compressors. It provides lubrication, sealing, and heat dissipation. |
Performance | Water lubrication offers efficient heat dissipation and cooling properties. It can effectively remove heat generated during compressor operation, preventing overheating and prolonging the compressor’s lifespan. Water lubrication can be suitable for applications where high heat generation is a concern. | Oil lubrication provides excellent lubrication properties, ensuring smooth operation and reduced friction. It offers good sealing capabilities, preventing air leakage. Oil-lubricated compressors are often preferred for heavy-duty applications that require high pressure and continuous operation. |
Maintenance | Water lubrication generally requires less maintenance compared to oil lubrication. Water does not leave sticky residues or deposits, simplifying the cleaning process and reducing the frequency of lubricant changes. However, water lubrication may require additional measures to prevent corrosion and ensure proper water quality. | Oil lubrication typically requires more maintenance. Regular oil changes, filter replacements, and monitoring of oil levels are necessary. Contaminants, such as dirt or moisture, can adversely affect oil lubrication and require more frequent maintenance tasks. |
Environmental Impact | Water lubrication is more environmentally friendly compared to oil lubrication. Water is non-toxic, biodegradable, and does not contribute to air or water pollution. It has a lower environmental impact and reduces the risk of contamination in case of leaks or spills. | Oil lubrication can have environmental implications. Oil leaks or spills can contaminate the environment, including air, soil, and water sources. Used oil disposal requires proper handling to prevent pollution. Oil-lubricated compressors also release volatile organic compounds (VOCs) into the air, contributing to air pollution. |
In summary, water-lubricated air compressors excel in efficient heat dissipation, require less maintenance, and have a lower environmental impact. On the other hand, oil-lubricated air compressors offer excellent lubrication properties and are suitable for heavy-duty applications. The choice between water and oil lubrication depends on specific requirements, operating conditions, and environmental considerations.
editor by CX 2024-02-05