Product Description
Product Description
Stationary air compressors
1. Screw host: professional customized two-stage compression screw host;High pressure and gas capacity;Low energy consumption and long service life;Low maintenance cost.
2.Left and right sides fully open door design: large operation space;Easy access to service points, time-saving and efficient; Centralized chassis discharge of waste liquid, safe and environmental protection;Chassis reinforcement design, strong and durable.
3.Famous brand diesel engine: exquisite manufacturing process, reliable and durable;More powerful, fuel adaptability;Low speed response and strong dynamic performance;The integrated design has lower failure rate and more convenient maintenance;Excellent reliability, low fuel consumption.
4.Controller: Chinese and English control interface, various parameters and lights are clear and practical;With data diagnosis and alarm indication, safe and reliable;Easy to operate, easy to learn.
Details Images
| Model | L-SPD670D |
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Engine displacement |
19 m3/min |
| 317 L/s | |
| 671 CFM | |
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Rated working pressure |
19 Bar |
| 1.9 Mpa | |
| Compressor oil volume | 80 L |
| Fuel tank capacity | 350 L |
| Noise Level | 75 +-/5 dB/A |
| Ambient temperature | 45ĀŗC~-25ĀŗC |
| Engine Model | 6CAT8.3-C260 |
| Rated speed power | 196/260kW/hp |
| Number of cylinders | 6 |
| Maximum engine speed | 2200rpm |
| Minimum engine speed | 1500rpm |
| Lubricating oil system capacity | 21L |
| Coolant system capacity | 50L |
| Overall Length | 3720mm |
| 4870mm | |
| Overall Width | 2140mm |
| Overall Height | 2550mm |
| Machine weight | 4570kg |
| 4710kg | |
| Exhaust valves | 1 – G 1 1/2″ 1 – G 2″ |
Company Profile
HangZhou CHINAMFG Drilling Equipment Co., Ltd. mainly provides holistic drilling solutions, serving the mining, stone crushing, water conservancy drilling industry, to help you solve the problem of drilling at high efficiency and low cost. We mainly provide mobile air compressors, drilling rigs, hammer, drill bit, crushers, underground water detector.We are your trustworthy partner.
FAQ
1.Is it difficult to operate and make the graph?
The instrument is easy to operate and we will send you the detailed operation manual via email.
The detector directly mapping with 1 button, no need computer drawing mapping.
2.What is the accuracy?
Our natural electric field instruments have been made for more than 10 years, with advanced technology and market test. We have obtained many invention patents. Our customer feedback rate reaches 100%. Accuracy over 95%.
3.How about after-sales service?
2 year warranty.Free data service for life.The professional geologist give the suggestions and 24hours online.
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| Lubrication Style: | Oil-free |
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| Cooling System: | Water Cooling |
| Power Source: | AC Power |
| 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 Do Oil-Free Scroll Compressors Compare to Oil-Lubricated Ones?
When comparing oil-free scroll compressors to oil-lubricated compressors, several factors come into play. Here’s a detailed comparison:
Oil Contamination:
One of the primary differences between the two types of compressors is the presence or absence of oil in the compression process. Oil-lubricated compressors require lubricating oil for the operation of internal components, which introduces the risk of oil carryover and contamination in the compressed air. On the other hand, oil-free scroll compressors operate without the use of lubricating oil, ensuring that the compressed air remains free from oil particles and contamination. This makes oil-free scroll compressors more suitable for applications that demand clean and oil-free compressed air, such as in medical, pharmaceutical, and electronics industries.
Maintenance Requirements:
Oil-lubricated compressors require regular maintenance to ensure proper lubrication and oil quality. This includes oil changes, oil filter replacements, and monitoring oil levels. In contrast, oil-free scroll compressors have reduced maintenance requirements since there is no need for oil changes or oil-related maintenance tasks. This can result in lower maintenance costs and less downtime for oil-free scroll compressors.
Environmental Impact:
Oil-lubricated compressors have the potential to release oil into the environment through leaks or during maintenance activities. This can have negative environmental implications and may require additional measures for proper oil disposal. Oil-free scroll compressors, on the other hand, eliminate the risk of oil contamination and minimize the environmental impact associated with oil handling and disposal.
Efficiency and Performance:
Oil-lubricated compressors and oil-free scroll compressors can both deliver compressed air efficiently. However, oil-free scroll compressors are known for their high energy efficiency due to their scroll mechanism design, which minimizes internal leakage and reduces energy losses. Additionally, the absence of oil in oil-free scroll compressors eliminates the need for oil separators, oil filters, and associated pressure drops, further contributing to improved efficiency.
Noise Levels:
Oil-lubricated compressors can generate more noise due to the reciprocating motion of components and the presence of oil in the compression process. Oil-free scroll compressors, on the other hand, operate with smooth and quiet scroll mechanisms, resulting in lower noise levels. This can be advantageous in applications where noise reduction is desired, such as in medical environments or noise-sensitive manufacturing processes.
Application Suitability:
The choice between oil-free scroll compressors and oil-lubricated compressors depends on the specific requirements of the application. Oil-lubricated compressors are commonly used in industrial applications where oil contamination is not a concern, and the focus is on high capacity and efficiency. On the other hand, oil-free scroll compressors are favored in industries that require clean, oil-free compressed air, such as medical, pharmaceutical, laboratory, and electronics manufacturing.
In summary, oil-free scroll compressors offer advantages such as oil-free compressed air, reduced maintenance requirements, lower environmental impact, high energy efficiency, and quieter operation. However, the choice between oil-free scroll compressors and oil-lubricated compressors ultimately depends on the specific needs and considerations of the application at hand.
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Can Oil-Free Scroll Compressors Handle High-Pressure Applications?
Oil-free scroll compressors are primarily designed for medium to low-pressure applications. Here’s a detailed explanation:
Operating Pressure Range:
Oil-free scroll compressors are generally suitable for applications that require operating pressures up to a certain limit. The exact pressure range can vary depending on the specific model and manufacturer, but most oil-free scroll compressors are designed for pressures typically ranging from 7 to 15 bar (100 to 220 psi). Some specialized models may be capable of higher pressures, but they are less common.
Scroll Compressor Design:
The design of oil-free scroll compressors is optimized for efficient operation at medium to low pressures. The scroll compressor consists of two interleaved spiral scrollsāone fixed and one orbitingāthat create compression chambers. As the orbiting scroll moves, it traps and compresses the air between the scrolls, resulting in compressed air being discharged. The design and geometry of the scrolls are typically optimized for specific pressure ranges, and they may not be suitable for extremely high-pressure applications.
Limited Compression Ratios:
Oil-free scroll compressors have limitations in terms of compression ratios, which affect their ability to handle high pressures. The compression ratio is the ratio of the discharge pressure to the suction pressure. As the compression ratio increases, so does the temperature of the compressed air. Oil-free scroll compressors are not designed to handle very high compression ratios, as they can lead to excessive temperatures, increased wear on components, and reduced efficiency.
Adequate Cooling:
High-pressure applications often require effective cooling to manage the heat generated during compression. Oil-free scroll compressors may have limitations in terms of cooling capacity, which can affect their ability to handle high-pressure operation. In applications with high-pressure requirements, additional cooling measures may be necessary to maintain optimal operating temperatures and prevent overheating of the compressor.
Alternative Compressor Types:
For high-pressure applications, alternative compressor types such as reciprocating compressors, rotary screw compressors, or centrifugal compressors are more commonly used. These compressor types are specifically designed to handle higher pressures and provide better efficiency and performance in such applications.
It’s important to consult the manufacturer’s specifications and guidelines to determine the maximum operating pressure for a specific oil-free scroll compressor model. Exceeding the recommended pressure limits can lead to premature wear, reduced efficiency, and potential compressor failure.
In summary, oil-free scroll compressors are generally not designed to handle high-pressure applications. They are more suitable for medium to low-pressure applications within their specified operating pressure range. For high-pressure requirements, alternative compressor types should be considered.
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Are Oil-Free Scroll Compressors More Energy-Efficient?
Yes, oil-free scroll compressors are known for their high energy efficiency. Here’s a detailed explanation:
Scroll Compressor Design:
Oil-free scroll compressors utilize a unique scroll mechanism that enables continuous compression. The scrolls, consisting of interleaved fixed and orbiting spirals, create a series of crescent-shaped gas pockets. As the orbiting scroll moves, it compresses the gas trapped in the pockets, resulting in the compression process. The continuous compression action minimizes internal leakage and improves volumetric efficiency, leading to higher energy efficiency compared to other compressor types.
Reduced Energy Consumption:
The efficient design of oil-free scroll compressors reduces energy consumption. The continuous compression action eliminates the need for clearance pockets or re-expansion chambers found in other compressor types, reducing energy losses associated with these components. Additionally, the scroll mechanism operates with minimal friction, resulting in less energy wasted as heat. The reduced energy consumption translates into lower operating costs and energy savings over the compressor’s lifetime.
Unload and Load Capacity Control:
Oil-free scroll compressors can be equipped with unload and load capacity control mechanisms to further enhance energy efficiency. Unload control allows the compressor to temporarily stop compression when the demand for compressed air decreases, reducing energy consumption during periods of low demand. Load capacity control adjusts the compressor’s capacity based on the compressed air demand, matching the output to the required load and optimizing energy usage. These control mechanisms ensure that the compressor operates efficiently, delivering the required compressed air while minimizing energy wastage.
Air Leakage Reduction:
Air leakage is a common source of energy loss in compressed air systems. Oil-free scroll compressors are designed to minimize internal and external air leakage. The scroll mechanism operates with precision tolerances, reducing internal leakage and ensuring efficient compression. Additionally, oil-free scroll compressors typically feature advanced sealing arrangements to minimize external air leakage. By reducing air leakage, energy losses are minimized, leading to improved energy efficiency.
Overall, oil-free scroll compressors are more energy-efficient compared to many other compressor types. Their unique scroll compressor design, reduced energy consumption, unload and load capacity control options, and air leakage reduction contribute to their high energy efficiency. Choosing an energy-efficient compressor can result in significant cost savings and a reduced environmental footprint for industries that rely on compressed air systems.


editor by CX 2024-02-03