China supplier A4572003070 Mercedes-Benz Tensioner Pulley, V-Ribbed Belt axle extender

Product Description

AMERCEDES-BENZ Tensioner Pulley, v-ribbed belt

OEM:A4572003070

REF NO.:GATES T38663 FEBI 30949

APPLICATION:”MERCEDES-BENZ CITARO (O 530) (1998/01 – /)
CITARO (O 530) Citaro N, Citaro MUE OM 457.973 1/01 – /
MERCEDES-BENZ AXOR (2001/09 – 2004/10)
AXOR 1835 LS OM 457.937 1/01 – 04/10
AXOR 1840 LS OM 457.937 1/01 – 04/10
AXOR 1843 LS OM 457.937 1/01 – 04/10
AXOR 2535 LS OM 457.948 1/01 – 04/10
AXOR 2540 LS OM 457.948 1/01 – 04/10
AXOR 2543 LS OM 457.948 1/01 – 04/10
MERCEDES-BENZ AXOR 2 (2004/10 – /)
AXOR 2 3335 OM 457.937 1/10 – /
AXOR 2 3340 OM 457.937 1/10 – /
AXOR 2 3343 OM 457.937 1/10 – /
AXOR 2 3243 OM 457.948 1/10 – /
AXOR 2 3340 K OM 457.957 1/10 – /
AXOR 2 3343 B OM 457.957 1/10 – /
AXOR 2 2436 LS, 2536 LS OM 457.980 1/10 – /
AXOR 2 2440 LS, 2540 LS OM 457.981 1/10 – /
AXOR 2 2443 LS, 2543 LS OM 457.980 1/10 – /
AXOR 2 2636 OM 457.937 1/10 – /
AXOR 2 2640 OM 457.937 1/10 – /
AXOR 2 2643 OM 457.937 1/10 – /
AXOR 2 3335 S OM 457.962 1/09 – /
AXOR 2 3340 S OM 457.962 1/06 – /
AXOR 2 3335 K OM 457.957 1/06 – /
AXOR 2 3535 K OM 457.937 1/06 – /
AXOR 2 2035 S OM 457.918 1/01 – /
AXOR 2 2040 S OM 457.918 1/01 – /
AXOR 2 2044 S OM 457.918 1/01 – /
AXOR 2 2644 S OM 457.948 1/01 – /
AXOR 2 3344 K OM 457.957 1/01 – /
AXOR 2 4143 K OM 457.957 1 / – /
AXOR 2 1835 LS OM 457.937 1/01 – /
AXOR 2 4140 B OM 457.957 1 / – /
AXOR 2 4143 B OM 457.957 1 / – /
AXOR 2 4135 K OM 457.957 1/06 – /
AXOR 2 4140 K OM 457.957 1/06 – /
AXOR 2 4143 K OM 457.957 1/06 – /
AXOR 2 3343 K OM 457.918 1/01 – /
AXOR 2 3343 S OM 457.918 1/01 – /
AXOR 2 4140 OM 457.918 1/01 – /
AXOR 2 4144 OM 457.918 1/01 – /
AXOR 2 2535 S, 2535 LS OM 457.981 1/10 – /
AXOR 2 2540 S, 2540 LS OM 457.980 1/10 – /
AXOR 2 2640 S OM 457.918 1/10 – /
AXOR 2 4135 B OM 457.957 1/10 – /
AXOR 2 3335 B OM 457.957 1/10 – 05/10
AXOR 2 3340 B OM 457.957 1/10 – 05/10
AXOR 2 2635 B OM 457.981 1/10 – /
AXOR 2 3235 OM 457.948 1/10 – /
AXOR 2 1836 LS, LLS OM 457.980 1/10 – /
AXOR 2 1840 LS, LLS OM 457.980 1/10 – /
AXOR 2 1843 LS, LLS OM 457.980 1/10 – /
AXOR 2 2535 L, 2536 L, 2536 LL OM 457.980 1/10 – /
AXOR 2 2540 L, LL OM 457.980 1/10 – /
AXOR 2 2543 L, LL OM 457.980 1/10 – /
AXOR 2 3240 OM 457.948 1/03 – /
AXOR 2 2636 K OM 457.981 1/10 – /
AXOR 2 2636 B OM 457.948 1/10 – /
AXOR 2 3236 K OM 457.981 1/10 – /
AXOR 2 3240 K OM 457.957 1/10 – /
AXOR 2 3243 K OM 457.981 1/10 – /
AXOR 2 3236 B OM 457.981 1/10 – /
AXOR 2 3240 B OM 457.981 1/10 – /
AXOR 2 3243 B OM 457.981 1/10 – /
AXOR 2 2640 K OM 457.981 1/10 – /
AXOR 2 2640 B OM 457.981 1/10 – /
AXOR 2 2643 K OM 457.981 1/10 – /
AXOR 2 2643 B OM 457.981 1/10 – /

Product Parameters

OEM NO.

  A4572003070
  Application   MERCEDES BENZ

Place of Origin

ZHangZhoug, China

Material

   Aluminium
  Product Name

Tensioner Pulley

Reference NO.

 

Packing

Neutral Packing

SHIPPING TERM

Sea/Air

Quality

100%tested

Size

same as OEM

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After-sales Service: 1 Year
Warranty: 1 Year
Certification: CCC, ISO9001, TS16949
Samples:
US$ 30/Piece
1 Piece(Min.Order)

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Order Sample

Customization:
Available

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Customized Request

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Payment Method:







 

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

v belt

What are the cost considerations associated with using V-belts in power transmission?

When considering the use of V-belts in power transmission applications, several cost factors should be taken into account. Here are the key cost considerations associated with using V-belts:

  1. Initial Cost:
  2. The initial cost of V-belts includes the purchase price of the belts themselves. V-belts are generally cost-effective compared to other power transmission options such as gears or chains. However, the specific cost can vary depending on factors such as belt type, size, and brand.

  3. Installation Cost:
  4. The installation cost involves the labor and time required to install the V-belts in the power transmission system. Compared to more complex power transmission systems, V-belts are relatively easy to install, requiring minimal specialized tools or expertise. This can result in lower installation costs.

  5. Maintenance Cost:
  6. V-belts generally require regular maintenance to ensure optimal performance and longevity. Maintenance activities such as belt tensioning, alignment checks, and periodic replacements contribute to the overall maintenance cost. However, compared to other power transmission systems, V-belts often have lower maintenance costs due to their simplicity.

  7. Energy Efficiency:
  8. V-belts offer good energy efficiency, as they typically have low friction losses during power transmission. This can result in lower energy consumption and reduced operating costs over time. Choosing high-quality V-belts with low slip and efficient power transfer characteristics can further enhance energy efficiency.

  9. Replacement and Downtime Costs:
  10. Over time, V-belts will wear out and require replacement. The frequency of belt replacements will depend on factors such as operating conditions, maintenance practices, and belt quality. Planned belt replacements can help minimize unexpected downtime and associated costs. However, unplanned belt failures can lead to costly downtime, lost production, and potential damage to other system components.

  11. Overall System Efficiency:
  12. The efficiency of the entire power transmission system should be considered when evaluating costs. While V-belts themselves are relatively efficient, the overall system efficiency can be influenced by factors such as pulley design, alignment, and load conditions. A well-designed and properly maintained V-belt drive system can optimize efficiency and reduce long-term operating costs.

By considering these cost considerations associated with using V-belts in power transmission, you can make informed decisions about the selection, installation, and maintenance of V-belt drive systems to achieve a balance between upfront costs and long-term operational efficiency.

v belt

What maintenance practices are recommended for prolonging the lifespan of V-belts?

Implementing regular maintenance practices is crucial for extending the lifespan of V-belts and ensuring their optimal performance. Here are some recommended maintenance practices:

  1. Visual inspections: Conduct regular visual inspections of the V-belts to identify any signs of wear, damage, or misalignment. Look for cracks, fraying, glazing, or any visible abnormalities. Inspect the pulleys for wear or damage as well.
  2. Tension checks: Check the tension of the V-belts on a periodic basis using a tension gauge. Ensure that the belts are within the recommended tension range specified by the manufacturer. Incorrect tension can lead to belt slippage, accelerated wear, and decreased power transmission efficiency.
  3. Pulley alignment: Verify that the pulleys are correctly aligned to prevent unnecessary stress and wear on the V-belts. Misaligned pulleys can cause belt slippage, uneven load distribution, and premature failure. Adjust the pulleys as necessary to maintain proper alignment.
  4. Cleanliness: Keep the V-belts and pulleys clean and free from dirt, debris, oil, or other contaminants. Regularly clean the belt drive system to prevent the accumulation of particles that can affect belt grip and performance.
  5. Environmental considerations: Evaluate the operating environment for factors that can impact the V-belts, such as temperature extremes, humidity, or exposure to chemicals. Take appropriate measures, such as implementing ventilation or using heat-resistant belts, to mitigate adverse environmental effects.
  6. Load monitoring: Ensure that the V-belts are not subjected to excessive loads beyond their capacity. Monitor the load requirements of the application and consider factors such as torque, horsepower, and operating conditions. Overloading can lead to accelerated wear and premature belt failure.
  7. Timely replacements: Establish a preventive maintenance schedule for V-belt replacements based on the manufacturer’s recommendations and the observed wear patterns. Replace worn or damaged V-belts promptly to prevent unexpected failures and minimize downtime.
  8. Proper storage: If spare V-belts are kept in stock, store them in a clean, dry, and temperature-controlled environment to avoid deterioration. Follow the manufacturer’s instructions for proper storage conditions.
  9. Training and documentation: Ensure that maintenance personnel receive proper training on V-belt maintenance procedures and safety precautions. Keep detailed records of maintenance activities, including inspections, tension measurements, and replacements, for future reference and tracking.

By implementing these maintenance practices, you can significantly prolong the lifespan of V-belts, reduce the risk of unexpected failures, and optimize the performance of the belt drive system. Regular maintenance not only extends the life of the V-belts but also allows for early detection of potential issues, enabling timely corrective actions to be taken.

v belt

What are the advantages of using V-belts in power transmission systems?

V-belts offer several advantages when used in power transmission systems:

  1. High friction: The V-shaped cross-section of the belt increases the contact area with the pulleys, resulting in high frictional forces. This allows for effective power transmission even in applications with high torque or heavy loads.
  2. Belt wedging: When the V-belt is tensioned, it wedges itself deeper into the pulley grooves, enhancing the friction and preventing slippage between the belt and the pulleys. This feature is especially useful in applications where the driven pulley needs to rotate at a different speed than the driving pulley.
  3. Quiet operation: V-belts generally operate with less noise compared to other types of belts, such as flat belts. The V-shaped design helps to reduce vibrations and noise levels during power transmission.
  4. Simple installation: V-belts are relatively easy to install and replace. They can be quickly mounted on the pulleys without requiring extensive alignment procedures.
  5. Cost-effective: V-belts are typically more affordable compared to other power transmission methods, such as gear systems or synchronous belts. This makes them a cost-effective choice for many applications.
  6. Flexibility: V-belts can accommodate misalignments and slight variations in pulley diameters. They can also operate in a wide range of temperature and humidity conditions, making them versatile for different environments.
  7. Energy efficiency: V-belts have relatively low energy losses during power transmission, resulting in efficient energy transfer between the driving and driven pulleys.

It’s important to note that while V-belts offer numerous advantages, they also have limitations. They are not suitable for applications that require precise speed control or when high-speed ratios are needed. In such cases, other power transmission methods may be more appropriate.

In conclusion, the advantages of using V-belts in power transmission systems include high friction, belt wedging, quiet operation, simple installation, cost-effectiveness, flexibility, and energy efficiency.

China supplier A4572003070 Mercedes-Benz Tensioner Pulley, V-Ribbed Belt   axle extenderChina supplier A4572003070 Mercedes-Benz Tensioner Pulley, V-Ribbed Belt   axle extender
editor by CX 2024-04-26