Product Description
BASIC INFORMATION
Description | VKM571 Generator Alternator freewheel clutch Pulley for MINI COOPER | |
OE Number | VKM571 / | |
Size | Outer Diameter: 49.5 mm Width1: 41 mm number of wedges: 6 |
|
Brand | SI, PPB | |
Weight | 0.421 Kgs | |
Place of Origin | ZHangZhoug, China | |
Certification | ISO9 MINI : MINI : MINI : 12317576515 MINI : MINI : |
BMW : BMW : 12317576515 CITROEN : 5702J0 CITROEN : 5705KG PEUGEOTT : 5702J0 PEUGEOTT : 5705KG |
REFERENCE NUMBERS
SKFF : VKM571 SNR : GA75906 DAYCO : ALP2403 FEBI BILSTEIN : 32311 |
GATES : OAP7115 INA : 535017810 OPTIMAL : F51113 RUVILLE : 56650 |
SWAG : 11932311 SWF : 588048 |
APPLICABLE CAR MODELS
Vehicle Models | Active Years | Engine | Displacement | Power | Cons.Type |
MINI (R56) Cooper | 2006-2012 | N12 B16 A,N16 B16 A | 1598 | 88 | Hatchback |
MINI (R56) Cooper S John Cooper Works | 2006-2571 | N14 B16 A,N14 B16 AB | 1598 | 141 | Hatchback |
MINI (R56) John Cooper Works | 2007-2013 | N14 B16 C,N18 B16 C | 1598 | 155 | Hatchback |
MINI CLUBMAN (R55) Cooper | 2007-2013 | N12 B16 A,N16 B16 A | 1598 | 88 | Estate |
MINI Convertible (R57) Cooper | 2008-2571 | N12 B16 A | 1598 | 88 | Convertible |
DETAILED PICTURES
PACKAGING & SHIPPING
Packaging Details | 1 piece in a single box 30 boxes in a carton 40 cartons in a pallet |
Nearest Port | ZheJiang or HangZhou |
Lead Time | For stock parts: 1-5 days. If no stock parts: <500 pcs: 15-30 days ≥500 pcs: to be negotiated. |
OUR SERVICES
– We have more than 20 years experience in auto bearings fields.
– Excellent quality control is 1 of our main principles
– We offer OEM service, accept customer label, develop the product with your drawings or samples
– Any questions will get response within 24 hours.
FAQ
1.How do you make our business long-term and good relationship?
– We keep good quality and competitive price to ensure our customers benefit ;
– We respect every customer as our friend and we sincerely do business and make friends with them,
no matter where they come from.
2. Do you test all your goods before delivery?
– Yes, we have 100% test before delivery
3. What is your terms of payment?
– T/T 30% as deposit, and 70% before delivery. We’ll show you the photos of the products and packages
before you pay the balance.
4. What is your terms of delivery?
– EXW, FOB, CFR, CIF, DDU.
After-sales Service: | 24 Hours |
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Warranty: | 1 Year / 30000-50000kms |
Type: | Tensioner Bearing |
Material: | Chrome Steel |
Tolerance: | P0 |
Certification: | ISO9001, TS16949 |
Samples: |
US$ 10/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
| Customized Request |
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How do mini pulleys contribute to the overall efficiency and performance of compact systems?
Mini pulleys play a significant role in enhancing the efficiency and performance of compact systems. Here’s a detailed explanation:
1. Power Transmission: Mini pulleys enable efficient power transmission within compact systems. They efficiently transfer rotational energy from a motor or power source to various components, such as belts, cables, or shafts. By effectively transmitting power, mini pulleys contribute to overall system efficiency.
2. Mechanical Advantage: Mini pulleys can be designed to provide mechanical advantage by changing the diameter or groove configuration. By increasing or decreasing the pulley’s diameter, the mechanical advantage can be adjusted. This allows for the amplification of force or speed, depending on the system requirements, leading to improved performance.
3. Motion Control: Mini pulleys enable precise motion control in compact systems. By utilizing belts or cables, mini pulleys can regulate the speed, direction, and positioning of moving components. This control enhances the accuracy and repeatability of movements, resulting in improved overall system performance.
4. Space Optimization: Mini pulleys are designed to be compact, allowing for efficient utilization of space in compact systems. Their small size and lightweight construction make them suitable for applications with limited space constraints. By effectively utilizing available space, mini pulleys contribute to the overall compactness and efficiency of the system.
5. Reduced Friction and Energy Loss: High-quality mini pulleys, when combined with suitable belts or cables, can minimize friction and energy loss in compact systems. Low-friction materials, precise manufacturing, and proper alignment result in smoother operation and reduced energy wastage. This contributes to improved efficiency and performance.
6. Load Distribution: Mini pulleys distribute loads evenly across belts or cables, reducing stress on individual components. By evenly distributing the load, mini pulleys help prevent premature wear and failure of belts or cables. This ensures the longevity and reliability of the system, leading to improved overall performance.
7. Modularity and Flexibility: Mini pulleys offer modularity and flexibility in compact systems. They can be easily integrated and combined with other components to achieve desired system configurations. The ability to select and interchange different mini pulleys allows for customization and adaptability, optimizing system performance for specific tasks.
8. Maintenance and Serviceability: Mini pulleys are designed for ease of maintenance and serviceability in compact systems. Their accessible design allows for quick inspection, replacement, or adjustment when required. This reduces downtime and enhances the overall efficiency of the system.
By providing efficient power transmission, mechanical advantage, precise motion control, space optimization, reduced friction, load distribution, modularity, and maintenance convenience, mini pulleys significantly contribute to the overall efficiency and performance of compact systems. Their role in enhancing power transfer, control, and reliability makes them indispensable components for achieving optimal performance in space-constrained applications.
How do mini pulleys enhance the precision and control of systems in limited spaces?
Mini pulleys play a crucial role in enhancing the precision and control of systems in limited spaces. Here’s a detailed explanation:
Due to their compact size and efficient power transmission capabilities, mini pulleys offer several advantages when it comes to precision and control in systems operating within limited spaces. Here are some ways in which mini pulleys contribute to these aspects:
- Reduced Friction: Mini pulleys are designed to minimize friction and ensure smooth operation. The reduced friction allows for more precise and controlled movement, especially in applications where even slight deviations can have a significant impact.
- Increased Mechanical Advantage: Mini pulleys can provide increased mechanical advantage in limited spaces. By utilizing pulley systems, force can be efficiently multiplied or redirected, enabling precise control and manipulation of objects or components within the confined area.
- Improved Positioning Accuracy: Mini pulleys, when combined with accurate positioning mechanisms, can enhance the precision and repeatability of positioning systems. They enable fine adjustments and controlled movements, allowing for accurate positioning of objects or tools within limited spaces.
- Flexible Routing of Cables or Belts: Mini pulleys facilitate the flexible routing of cables or belts in compact systems. They enable the redirection of cables or belts around obstacles, corners, or tight spaces without compromising the precision or control of the system. This flexibility in routing contributes to efficient space utilization and optimized system design.
- Integration with Miniature Components: Mini pulleys are compatible with other miniature components commonly used in limited-space systems, such as miniature motors, sensors, or actuators. The integration of mini pulleys with these components allows for precise coordination and control of movements, ensuring the overall system operates with precision and accuracy.
- Customization and Adaptability: Mini pulleys can be customized and adapted to suit the specific requirements of systems operating in limited spaces. They can be designed with specific groove profiles, materials, or dimensions to optimize performance and fit within the available space. This customization enables precise control tailored to the unique needs of the system.
By leveraging these characteristics, mini pulleys provide enhanced precision and control in systems operating within limited spaces. Their ability to minimize friction, increase mechanical advantage, improve positioning accuracy, facilitate flexible routing, integrate with miniature components, and allow for customization makes them invaluable in achieving precise and controlled movements in confined environments.
Can you explain the key features and advantages of using mini pulleys in various applications?
Mini pulleys offer several key features and advantages that make them suitable for various applications. Here’s an explanation of their key features and advantages:
- Compact Size: Mini pulleys are characterized by their compact size, making them ideal for applications with limited space. Their small dimensions allow for installation in tight spaces where standard-sized pulleys would be impractical or impossible to fit. This feature is particularly beneficial in miniature machinery, small-scale robotics, and other applications with size constraints.
- Lightweight: Mini pulleys are lightweight due to their smaller size and reduced material requirements. This feature is advantageous in applications where weight reduction is critical, such as in aerospace or portable devices. The lightweight nature of mini pulleys helps minimize the overall weight of the equipment or system, improving efficiency and maneuverability.
- Precision and Accuracy: Mini pulleys are often designed with high precision and accuracy. Their smaller size allows for finer control and more precise operation. This precision is essential in applications that require accurate positioning, such as in optical devices, laboratory equipment, or miniature robotics.
- Reduced Inertia: The smaller mass and dimensions of mini pulleys result in reduced inertia compared to standard-sized pulleys. This characteristic enables faster acceleration and deceleration, making mini pulleys suitable for applications that require rapid movements or quick response times.
- Lower Friction: Mini pulleys can exhibit lower friction compared to larger pulleys due to their reduced contact area with belts or ropes. This lower friction contributes to improved energy efficiency and reduced wear on the pulley and the associated components. It is particularly advantageous in applications where minimizing power loss and maximizing efficiency are crucial.
- Customization: Mini pulleys can be customized to meet specific application requirements. Manufacturers can design mini pulleys with various groove profiles, diameters, and materials to ensure compatibility with specific belts or ropes and optimize performance within the given constraints. This customization allows for a more precise fit and reliable operation in a wide range of applications.
- Application Versatility: Although mini pulleys are commonly used in specialized applications, they can also find utility in various industries and equipment types. Their compact size and lightweight nature make them adaptable to different applications, including miniature conveyors, medical devices, small-scale automation, precision instruments, and more.
- Cost-Effectiveness: Mini pulleys can provide cost-saving benefits in certain scenarios. Their smaller size and reduced material requirements can lead to lower manufacturing costs. Additionally, the compact design of mini pulleys can contribute to space-saving, reducing the overall footprint and associated costs in applications where real estate is limited or expensive.
In conclusion, mini pulleys offer key features and advantages such as compact size, lightweight construction, precision and accuracy, reduced inertia, lower friction, customization options, application versatility, and potential cost-effectiveness. These features make mini pulleys a desirable choice for various applications where space, weight, precision, and efficiency are crucial considerations.
editor by CX
2023-10-02