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China Standard High Strength T Link V Belt Z10/3L Same as Fenner Quality axle car part

Product Description

               
             
High Strength T Link V Belt Z10/3L Same as Fenner Quality

 

Product Description

Power twist is individual links made of high performance polyurethane/polyester CZPT material. Links are connected and secured together by hand using a twist-lock design.

Detailed Photos

Product Parameters

 

Belt Model

Z10

Color

Orange

Material

Polyurethane

Nuts

With

Operating temperature

-20-80 ºC

 

Our Advantages

 

Longer Belt Life in Harsh Operating Conditions

Our link belt adopts high performance polyurethane and polyester CZPT materials which guarantee excellent durability in harsh conditions. They will outperform conventional rubber V belts in handling hostile environments, including exposure to oil, grease, water and so on. They are also more resistant to abrasion and will operate, with no loss in performance, at a more extreme temperature range from -40°C to 90°C.

Reduced Belt Stock…Any Belt, Any Time

There’s no need to maintain inventory of numerous different endless V belts to cover all your drives. Carry a box in stock of each common size and you’re almost 100% covered with a significant reduction in working capital tied up in spares.
 

Easier and Faster Installation

Unique “quick connect” belt designs provide for easier and faster belt installation, even on captured or restricted access drives – no tools required. Belts are easily made up to the required length, by hand, in seconds and can be rolled CZPT a drive just like a bicycle chain. No need to dismantle drive components or change existing pulleys.

Minimized Maintenance Time

Power twist drive belt has no need to re-10sion. All other power transmission belts, require re-10sioning after an initial “run in” period. But power twist drive has eliminated that step by pre-seating the tabs on the belt, therefore once you install the belt properly PT Drive is a Fit it and Forget It option.
 

 

Reduced Drive Vibration & System Noise

Link belt do not have the continuous tension cords found in conventional endless belts. As a result, transmitted vibration in the drive system can be reduced by 50% or more. Consequently, system noise is reduced and, as a bonus, bearing life extended.

 

Company Profile

 

Xuanze Industrial Drive Systems (ZheJiang ) Co., Ltd.,

Xuanze Industrial is a production of industrial conveyor belt, belt, to help tape and technology development of modern science and technology enterprises, the company has a standard production workshop of 2,000 square meters, the company employees 40 people, sales staff of ten.

With more than 10 industrial belt patents, our company develops and produces seamless PU tapes to break the monopoly of the industry in Europe and the United States. It has surpassed Europe and the United States in application. SIBR-5M synchronous silicone tape developed for the hygiene products industry, silicone and timing belt with high bonding strength, no cracks, no dust.

Break Japan’s NITTA monopoly on the hygiene products industry, our company’s imports of silicone conveyor belt wear resistance, anti-expansion force, the advantages of high visual detection accuracy.

 

Certifications

 

XZ belt has got many paents, and we are authorized as High-tech Enterprise by ZheJiang Government.

Packaging & Shipping

 

                  XZ will customized every customer’s parcel package, try to reduce the parcel volume to save freight cost.
 

FAQ

 

1. Is your company a manufacturer or a trading company?

We are manufacturers and have our own factory located in HangZhou.

2. What is your lead time?

Generally it takes 3 to 5 days. The exact delivery time depends on the specific items and demanded quantity.

3. What terms does your company use in our international trade?

We usually do business in EXW works and door-to-door express . But if you have special requirement, we can also do in your convenience.

4. Can I get a sample first?

Of course, you can get a sample first, I make sure you will reorder and be happy with our high quality sample products.

5. Does your company provide OEM service?

Sure. Not only color, thickness, but also texture and design.

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Standard or Nonstandard: Standard
Application: Textile Machinery, Conveyer Equipment, Packaging Machinery, Food Machinery, Marine, Mining Equipment
Feature: Oil-Resistant, Corrosion-Resistant, Wear-Resistant
Tensile Strength: Strong
Material: PU
Type: V Belt
Customization:
Available

|

Customized Request

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 are the key differences between V-belts and other types of power transmission belts?

V-belts are a popular type of power transmission belts, but they differ from other types of belts in terms of design, construction, and specific applications. Here are the key differences:

1. Belt Profile:

V-belts have a trapezoidal or V-shaped cross-sectional profile, which gives them their name. This profile allows the belts to fit securely into V-shaped pulleys, providing effective power transmission and grip. Other types of belts, such as flat belts or timing belts, have different profiles suited for specific applications.

2. Power Transmission Method:

V-belts transmit power through frictional forces between the belt and the pulleys. As the belt wraps around the pulleys, the friction between the belt and the pulley surfaces allows the transfer of torque and power. In contrast, other belts, like timing belts or chain drives, use toothed profiles or interlocking mechanisms to transmit power, providing precise synchronization and higher torque transmission.

3. Load Capacity:

V-belts are designed to handle moderate to high loads, making them suitable for a wide range of applications. However, certain applications with heavier loads may require specialized heavy-duty V-belts or alternative belt types, such as synchronous belts or chain drives, which offer higher load-carrying capacities.

4. Speed Range:

V-belts are suitable for a broad speed range, but their limitations may vary depending on the specific design, material, and construction. Traditional V-belts may have speed limitations at extremely high speeds due to centrifugal forces and heat generation. High-speed V-belts or narrow V-belts are available for applications that require higher speeds. In contrast, timing belts and synchronous belts are designed for precise speed control and are commonly used in applications with strict speed requirements.

5. Tensioning and Maintenance:

V-belts require periodic tensioning to maintain proper grip and power transmission efficiency. Tensioning is typically achieved through manual adjustment or automatic tensioners. Other types of belts, such as timing belts or chain drives, often have fixed tensioning systems and require less frequent maintenance.

6. Noise and Vibration:

V-belts generally operate with lower noise and vibration levels compared to other types of belts, such as chain drives. The design and frictional nature of V-belts contribute to smoother operation and reduced noise generation, making them suitable for applications where noise and vibration control is important.

7. Applications:

V-belts are widely used in various applications, including industrial machinery, automotive systems, HVAC systems, and power transmission in general. They are versatile and can accommodate different power requirements. Other belt types, such as timing belts, are commonly used in precision positioning, robotics, or applications that require synchronous motion.

Overall, V-belts offer reliable and cost-effective power transmission for a wide range of applications. However, the selection of the appropriate belt type depends on factors such as load requirements, speed range, precision, noise considerations, and specific application needs.

v belt

What are the common causes of V-belt failure and how can they be prevented?

V-belt failure can occur due to various factors, and understanding the common causes is essential for preventing premature belt failure and ensuring reliable operation. Here are some common causes of V-belt failure and preventive measures:

  1. Misalignment: Misalignment between the pulleys can cause excessive wear, uneven load distribution, and belt slippage. To prevent misalignment, ensure proper pulley alignment during installation and regularly inspect and adjust the pulleys as needed.
  2. Over-tensioning or under-tensioning: Incorrect belt tension can lead to excessive stress or slippage. Over-tensioning can cause accelerated wear, while under-tensioning can result in belt slipping and reduced power transmission. Follow the manufacturer’s recommended tension guidelines and use a tension gauge to achieve the proper tension for the specific V-belt.
  3. Pulley damage: Damaged or worn-out pulleys can cause belt damage and premature failure. Inspect the pulleys regularly for signs of wear, such as grooves, cracks, or deformation. Replace any damaged pulleys promptly to prevent belt damage.
  4. Contamination: Contaminants such as dirt, debris, oil, or chemicals can affect the belt’s grip and cause accelerated wear. Keep the belt and pulleys clean and free from contaminants. Regularly inspect the environment and implement appropriate measures to prevent contamination.
  5. Excessive heat: High temperatures can cause belt degradation, leading to reduced strength and increased wear. Ensure proper ventilation and cooling in the belt drive system. If the application generates excessive heat, consider using heat-resistant belts or implementing cooling measures.
  6. Excessive load: Overloading the V-belt beyond its capacity can cause excessive stress and lead to premature failure. Ensure the V-belt is appropriately sized for the application and consider factors such as torque, horsepower, and load requirements. If the load exceeds the belt’s capacity, consider using a higher-rated belt or alternative power transmission methods.
  7. Age and wear: Over time, V-belts naturally wear out and lose their effectiveness. Regularly inspect the belts for signs of wear, such as fraying, cracking, or glazing. Replace worn-out belts as part of a preventive maintenance schedule to avoid unexpected failures.

Preventive measures to reduce V-belt failure include regular inspections, proper installation, correct tensioning, pulley maintenance, cleanliness, temperature management, load monitoring, and timely replacement. Following manufacturer’s guidelines, conducting routine maintenance, and addressing any issues promptly will help extend the lifespan and reliability of V-belts in power transmission systems.

In summary, common causes of V-belt failure include misalignment, incorrect tensioning, pulley damage, contamination, excessive heat, excessive load, and age/wear. By implementing preventive measures and conducting regular maintenance, these causes can be minimized, ensuring optimal V-belt performance and longevity.

China Standard High Strength T Link V Belt Z10/3L Same as Fenner Quality   axle car partChina Standard High Strength T Link V Belt Z10/3L Same as Fenner Quality   axle car part
editor by CX 2024-04-03

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