Product Description
Diesel Engine Trailer Mounted Lubricated Rotary Screw Air Compressor
1.Use Germany KAPP machine and German manufacturing technique to process the compression element, the components manufactured to the highest standards and precision aligned roller-bearings ensure long service life with maximum reliability.
2.Heavy-duty CHINAMFG diesel engine for extended operation.
3.Excellent components, for example, Germany MANN oil filter and CHINAMFG electronics for high performance.
4.Automatic operation system helps the operator to master the operating skills quickly, unattended operation and remote control are available.
5.Conform to CE, ISO9001 and energy saving certification, etc.
6.Applications: mining, hydropower, oil and gas exploitation, borehole, shipyard, construction, chemical industry, quarry, sandblasting, pipeline pressure test, public works, etc.
Technical Parameters Of Diesel Driven Portable Air Compressor
Model | Free Air Delivery | Normal Working Pressure | Weight | Dimensions (without towbar) |
Diesel Engine Manufacturer | Diesel Engine Model | ||||
m3/min | CFM | bar(e) | psig | kg | L(mm) | W(mm) | H(mm) | |||
DACY-3.2 | 3.2 | 115 | 8 | 116 | 1000 | 2100 | 1500 | 1360 | yangdong | YSD490G |
DACY-5.3/7 | 5.3 | 190 | 7 | 102 | 1600 | 2300 | 1790 | 1580 | Cummins | 4BT3.9-C80 |
DACY-5/10 | 5.0 | 177 | 10 | 145 | 1600 | 2300 | 1790 | 1580 | 4BT3.9-C80 | |
DACY-6/7 | 6.0 | 212 | 7 | 102 | 1600 | 2300 | 1790 | 1580 | 4BT3.9-C80 | |
DACY-7.5/7 | 7.5 | 265 | 7 | 102 | 1600 | 2300 | 1790 | 1580 | 4BT3.9-C80 | |
DACY-8.5/10 | 8.5 | 300 | 10 | 145 | 1800 | 2600 | 1910 | 2015 | 4BTA3.9-C125 | |
DACY-9/7 | 9.0 | 318 | 7 | 102 | 1800 | 2440 | 1910 | 1920 | 4BT3.9-C100 | |
DACY-10/8 | 10.0 | 353 | 8 | 116 | 1800 | 2440 | 1910 | 1920 | 4BT3.9-C100 | |
DACY-10/13 | 10.0 | 353 | 13 | 189 | 2050 | 3270 | 1910 | 2080 | 6BT5.9-C150 | |
DACY-11/10 | 11 | 388 | 10 | 145 | 2050 | 3270 | 1910 | 2080 | 6BT5.9-C150 | |
DACY-11/13 | 11 | 388 | 13 | 189 | 3600 | 3575 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-12/7 | 12 | 424 | 7 | 102 | 2050 | 3270 | 1910 | 1950 | 6BT5.9-C150 | |
DACY-12/10 | 12 | 424 | 10 | 145 | 2050 | 3270 | 1910 | 1950 | 6BT5.9-C150 | |
DACY-12/13 | 12 | 424 | 13 | 189 | 2050 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-13/8 | 13 | 460 | 8 | 116 | 2050 | 3270 | 1910 | 2080 | 6BT5.9-C150 | |
DACY-13/13 | 13 | 460 | 13 | 189 | 3600 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-15.5/10 | 15.5 | 547 | 10 | 145 | 3600 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-15/13 | 15 | 530 | 13 | 189 | 3600 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-15/16 | 15 | 530 | 16 | 232 | 4000 | 3390 | 1700 | 2640 | 6CTA8.3-C215 | |
DACY-15/18 | 15 | 530 | 18 | 261 | 3500 | 3555 | 1750 | 2660 | 6CTA8.3-C260 | |
DACY-17/7 | 17 | 600 | 7 | 102 | 3600 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-17/8 | 17 | 600 | 8 | 116 | 3600 | 3400 | 1700 | 2320 | 6BTA5.9-C180 | |
DACY-17/13 | 17 | 600 | 13 | 189 | 4000 | 3390 | 1700 | 2640 | 6CTA8.3-C215 | |
DACY-17/14.5 | 17 | 600 | 14.5 | 210 | 3500 | 3555 | 1750 | 2660 | 6CTA8.3-C260 | |
DACY-17/16 | 17 | 600 | 16 | 232 | 3500 | 3555 | 1750 | 2660 | 6CTA8.3-C260 | |
DACY-18/18 | 18 | 636 | 18 | 261 | 3300 | 4225 | 1980 | 2690 | 6LTAA8.9-C325 | |
DACY-19/14.5 | 19 | 671 | 14.5 | 210 | 3300 | 4225 | 1980 | 2690 | 6LTAA8.9-C325 | |
DACY-19/16 | 19 | 671 | 16 | 232 | 3300 | 4225 | 1980 | 2690 | 6LTAA8.9-C325 | |
DACY-20/16 | 20 | 706 | 16 | 232 | 3300 | 4225 | 1980 | 2690 | 6CTA8.3-C215 | |
DACY-21/8 | 21 | 742 | 8 | 116 | 4000 | 3390 | 1700 | 2640 | 6CTA8.3-C215 | |
DACY-22/20 | 22 | 777 | 20 | 290 | 6500 | 4700 | 2300 | 2750 | 6LTAA9.5-C360-II | |
DACY-22.5/14 | 22.5 | 795 | 14 | 203 | 3300 | 4225 | 1980 | 2690 | 6LTAA8.9-C325 | |
DACY-25.5/20 | 22.5 | 900 | 20 | 290 | 5500 | 4750 | 2100 | 2860 | EQR400-K2 | |
DACY-27/10 | 27 | 953 | 10 | 145 | 3300 | 4225 | 1980 | 2690 | 6LTAA8.9-C325 | |
DACY-32/10 | 32 | 1130 | 10 | 145 | 6500 | 4700 | 2300 | 2750 | 6LTAA9.5-C360-II | |
DACY-33/35 | 33 | 1165 | 35 | 508 | 7200 | 5000 | 2200 | 3000 | KTA19-P680 | |
DACY-34/25 | 34 | 1200 | 25 | 363 | 6000 | 4510 | 2160 | 3150 | KTA19-C600 | |
DACY-39/25 | 39 | 1377 | 25 | 363 | 7200 | 5000 | 2200 | 2200 | KTA19-P680 | |
DACY-45/10 | 45 | 1590 | 10 | 145 | 6200 | 5000 | 2200 | 3150 | QSZ13-C550 |
*) Specifications are subject to change without prior notice
DENAIR Factory
DENAIR Hannover Messe 2017
FAQ
Q1: Are you factory or trade company?
A1: We are factory.
Q2: What the exactly address of your factory?
A2: Our company is located in No. 6767, Tingfeng Rd. Xihu (West Lake) Dis.n District, ZheJiang 201502, China
And our factory is located in No. 366, YangzhuangBang Street, Pingxing Rd., Xindai Town, HangZhou, ZHangZhoug Province, China
Q3: Warranty terms of your machine?
A3: Two years warranty for the machine and technical support according to your needs.
Q4: Will you provide some spare parts of the Air Compressors?
A4: Yes, of course.
Q5: How long will you take to arrange production?
A5: 380V 50HZ we can delivery the goods within 10 days. Other electricity or other color we will delivery within 22 days
Q6: Can you accept OEM orders?
A6: Yes, with professional design team, OEM orders are highly welcome. /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Lubrication Style: | Lubricated |
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Cooling System: | Air Cooling |
Power Source: | Diesel Engine |
Customization: |
Available
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How are air compressors used in the food and beverage industry?
Air compressors play a vital role in the food and beverage industry, providing a reliable source of compressed air for various applications. Here are some common uses of air compressors in this industry:
1. Packaging and Filling:
Air compressors are extensively used in packaging and filling operations in the food and beverage industry. Compressed air is utilized to power pneumatic systems that control the movement and operation of packaging machinery, such as filling machines, capping machines, labeling equipment, and sealing devices. The precise and controlled delivery of compressed air ensures accurate and efficient packaging of products.
2. Cleaning and Sanitization:
Air compressors are employed for cleaning and sanitization purposes in food and beverage processing facilities. Compressed air is used to operate air-powered cleaning equipment, such as air blowguns, air-operated vacuum systems, and air knives. It helps remove debris, dust, and contaminants from production lines, equipment, and hard-to-reach areas. Additionally, compressed air is used for drying surfaces after cleaning and for applying sanitizing agents.
3. Cooling and Refrigeration:
In the food and beverage industry, air compressors are utilized in cooling and refrigeration systems. Compressed air is used to drive air compressors in refrigeration units, enabling the circulation of refrigerants and maintaining optimal temperatures for food storage and preservation. The controlled airflow provided by the compressors facilitates efficient cooling and refrigeration processes.
4. Aeration and Mixing:
Air compressors are used for aeration and mixing applications in the food and beverage industry. Compressed air is introduced into processes such as fermentation, dough mixing, and wastewater treatment. It helps in promoting oxygen transfer, enhancing microbial activity, and facilitating proper mixing of ingredients or substances, contributing to the desired quality and consistency of food and beverage products.
5. Pneumatic Conveying:
In food processing plants, air compressors are employed for pneumatic conveying systems. Compressed air is used to transport bulk materials such as grains, powders, and ingredients through pipes or tubes. It enables the gentle and efficient movement of materials without the need for mechanical conveyors, reducing the risk of product damage or contamination.
6. Quality Control and Testing:
Air compressors are utilized in quality control and testing processes within the food and beverage industry. Compressed air is used for leak testing of packaging materials, containers, and seals to ensure product integrity. It is also employed for spraying air or gases during sensory analysis and flavor testing.
7. Air Agitation:
In certain food and beverage production processes, air compressors are used for air agitation. Compressed air is introduced into tanks, mixing vessels, or fermentation tanks to create turbulence and promote mixing or chemical reactions. It aids in achieving consistent product quality and uniform distribution of ingredients or additives.
It is important to note that air compressors used in the food and beverage industry must meet strict hygiene and safety standards. They may require specific filtration systems, oil-free operation, and compliance with food safety regulations to prevent contamination or product spoilage.
By utilizing air compressors effectively, the food and beverage industry can benefit from improved productivity, enhanced product quality, and efficient processing operations.
Are there differences between single-stage and two-stage air compressors?
Yes, there are differences between single-stage and two-stage air compressors. Here’s an in-depth explanation of their distinctions:
Compression Stages:
The primary difference between single-stage and two-stage air compressors lies in the number of compression stages they have. A single-stage compressor has only one compression stage, while a two-stage compressor has two sequential compression stages.
Compression Process:
In a single-stage compressor, the entire compression process occurs in a single cylinder. The air is drawn into the cylinder, compressed in a single stroke, and then discharged. On the other hand, a two-stage compressor utilizes two cylinders or chambers. In the first stage, air is compressed to an intermediate pressure in the first cylinder. Then, the partially compressed air is sent to the second cylinder where it undergoes further compression to reach the desired final pressure.
Pressure Output:
The number of compression stages directly affects the pressure output of the air compressor. Single-stage compressors typically provide lower maximum pressure levels compared to two-stage compressors. Single-stage compressors are suitable for applications that require moderate to low air pressure, while two-stage compressors are capable of delivering higher pressures, making them suitable for demanding applications that require greater air pressure.
Efficiency:
Two-stage compressors generally offer higher efficiency compared to single-stage compressors. The two-stage compression process allows for better heat dissipation between stages, reducing the chances of overheating and improving overall efficiency. Additionally, the two-stage design allows the compressor to achieve higher compression ratios while minimizing the work done by each stage, resulting in improved energy efficiency.
Intercooling:
Intercooling is a feature specific to two-stage compressors. Intercoolers are heat exchangers placed between the first and second compression stages. They cool down the partially compressed air before it enters the second stage, reducing the temperature and improving compression efficiency. The intercooling process helps to minimize heat buildup and reduces the potential for moisture condensation within the compressor system.
Applications:
The choice between a single-stage and two-stage compressor depends on the intended application. Single-stage compressors are commonly used for light-duty applications such as powering pneumatic tools, small-scale workshops, and DIY projects. Two-stage compressors are more suitable for heavy-duty applications that require higher pressures, such as industrial manufacturing, automotive service, and large-scale construction.
It is important to consider the specific requirements of the application, including required pressure levels, duty cycle, and anticipated air demand, when selecting between a single-stage and two-stage air compressor.
In summary, the main differences between single-stage and two-stage air compressors lie in the number of compression stages, pressure output, efficiency, intercooling capability, and application suitability.
How do you choose the right size of air compressor for your needs?
Choosing the right size of air compressor is essential to ensure optimal performance and efficiency for your specific needs. Here are some factors to consider when selecting the appropriate size:
1. Air Demand: Determine the air demand requirements of your applications. Calculate the total CFM (Cubic Feet per Minute) needed by considering the air consumption of all the pneumatic tools and equipment that will be operated simultaneously. Choose an air compressor with a CFM rating that meets or exceeds this total demand.
2. Pressure Requirements: Consider the required operating pressure for your applications. Check the PSI (Pounds per Square Inch) rating of the tools and equipment you will be using. Ensure that the air compressor you choose can deliver the necessary pressure consistently.
3. Duty Cycle: Evaluate the duty cycle of the air compressor. The duty cycle represents the percentage of time the compressor can operate within a given time period without overheating or experiencing performance issues. If you require continuous or heavy-duty operation, choose a compressor with a higher duty cycle.
4. Power Source: Determine the available power source at your location. Air compressors can be powered by electricity or gasoline engines. Ensure that the chosen compressor matches the available power supply and consider factors such as voltage, phase, and fuel requirements.
5. Portability: Assess the portability requirements of your applications. If you need to move the air compressor frequently or use it in different locations, consider a portable or wheeled compressor that is easy to transport.
6. Space and Noise Constraints: Consider the available space for installation and the noise restrictions in your working environment. Choose an air compressor that fits within the allocated space and meets any noise regulations or requirements.
7. Future Expansion: Anticipate any potential future expansions or increases in air demand. If you expect your air demand to grow over time, it may be wise to choose a slightly larger compressor to accommodate future needs and avoid the need for premature replacement.
8. Budget: Consider your budgetary constraints. Compare the prices of different air compressor models while ensuring that the chosen compressor meets your specific requirements. Keep in mind that investing in a higher-quality compressor may result in better performance, durability, and long-term cost savings.
By considering these factors and evaluating your specific needs, you can choose the right size of air compressor that will meet your air demand, pressure requirements, and operational preferences, ultimately ensuring efficient and reliable performance.
editor by CX 2024-03-06