Product Description

 

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Product Description

One of the most compelling benefits of our QLP inverted tooth chain is its versatility and incredible durability. Whether you need a light-duty conveying or heavy-duty power transmission chain, the chain can be customised to meet your needs.
The chain is also corrosion-resistant. This means it can be used in harsh environments without worrying about rust or other types of damage. Its unique tooth shape reduces noise and vibration.

 

When you need a specific design, we can provide customised solutions based on what you need. Whether you require specific features, plans, materials, or specifications, our team can work to ensure you get a chain that fully meets your needs.
Are you looking for other chains? 
Leave your message below, and feel free to contact us!

 

FAQ

Question 1: Are you a Manufacturer or a Trading Company?
Answer:
We are a 100% chain manufacturer with 23 years of experience
Question 2: What should I provide to get a quotation?
Answer:
1. Type of the chain (with photos if available)
2. Pitch of the chain
3. Width of the chain
4. Length and quantity of the chain
5. Other specific requirements
Question 3: How long is your manufacturing and delivery time?
Answer: 
Products are usually finished in 2 weeks, depending on the type and quantity. Also, please get in touch with us to check the delivery time to your destination.
Question 4: How long is your guaranteed time?
Answer: 
We offer a three-year guarantee if you purchase chains and matched sprockets together.
If you need chains only, a one-year guarantee can also be confirmed.
Question 5: Trade terms and Payment terms?
Answer:
We accept EXW, FOB, DDU, Door to Door. Payment terms, such as T/T, L/C, and Western Union, are acceptable. We also provide the service of Online Trading in this B2B platform.

 

Company Profile

 

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Standard or Nonstandard: Standard
Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Food Machinery, Marine, Mining Equipment, Agricultural Machinery, Car
Structure: Tooth Chain
Samples:
US$ 100/Meter
1 Meter(Min.Order)

|

Order Sample

Customization:
Available

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Customized Request

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



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

drive chain

How does the material hardness of a drive chain affect its durability?

The material hardness of a drive chain plays a significant role in determining its durability and resistance to wear. Here is a detailed explanation:

Material hardness refers to the ability of a material to resist indentation, abrasion, and penetration by external forces. In the context of drive chains, the hardness of the chain’s components, such as pins, bushings, and rollers, directly affects the chain’s durability and lifespan.

When it comes to drive chain durability, the following factors come into play:

  • Resistance to Wear: A higher material hardness typically results in better resistance to wear. Drive chains with harder materials can withstand the friction and contact forces encountered during operation, minimizing the wear on critical components. This translates to extended chain life and reduced maintenance requirements.
  • Impact Resistance: The material hardness of a drive chain also affects its ability to resist impact forces. Chains operating in environments with frequent impacts or shock loads, such as in mining or heavy-duty applications, require high hardness materials to withstand the sudden stresses without deformation or failure.
  • Resistance to Deformation: Harder materials exhibit greater resistance to deformation under load. This is particularly important in drive chains where precise interlocking of chain components is necessary for efficient power transmission. Chains with higher material hardness maintain their shape and dimensional integrity, ensuring consistent performance and minimizing the risk of chain elongation or misalignment.
  • Corrosion Resistance: While material hardness primarily affects wear resistance, it can indirectly impact the chain’s resistance to corrosion. Certain high-hardness materials, such as stainless steel or specific alloys, offer improved corrosion resistance compared to softer materials. This is especially relevant in applications where the chain is exposed to corrosive environments, such as marine or chemical industries.

It is important to note that while higher hardness generally leads to improved durability, excessive hardness can also result in brittleness and reduced impact resistance. Therefore, a balance must be struck between hardness and other mechanical properties to ensure optimal performance and durability of the drive chain.

Manufacturers typically specify the appropriate hardness level for drive chain components based on the specific application requirements. These specifications take into account factors such as load capacity, operating conditions, anticipated wear rates, and desired service life.

Regular maintenance practices, such as proper lubrication, periodic inspection, and tension adjustment, are essential for maximizing the durability and performance of the drive chain, regardless of its material hardness.

By selecting a drive chain with the appropriate material hardness and implementing proper maintenance practices, operators can ensure optimal durability, extended chain life, and reliable power transmission in various industrial applications.

drive chain

How does the weight of a drive chain affect its performance?

The weight of a drive chain can have some impact on its performance, although it is generally not a significant factor. Here is a detailed explanation:

The weight of a drive chain refers to the mass of the chain itself. While the weight of the chain may vary depending on its size, type, and material, it is typically not a critical consideration in most applications. Here are a few points to understand about the weight of a drive chain:

  • Inertia: The weight of the drive chain contributes to its inertia, which is the resistance to changes in motion. In high-speed or dynamic applications, such as robotics or automation, excessive chain weight can increase inertia and potentially affect the responsiveness and precision of the system. However, the weight of the chain is usually relatively small compared to other components in the system, and the impact on performance is often minimal.
  • Tension and Tensioning Mechanisms: The weight of the chain can influence the tensioning requirements and the design of tensioning mechanisms. Heavier chains may require stronger tensioning systems to maintain proper tension and prevent chain slack. It is essential to consider the weight of the chain when designing and implementing tensioning mechanisms to ensure optimal performance.
  • Load Capacity: The weight of the chain itself does not significantly affect the load capacity or strength of the chain. The load capacity is determined by the chain’s design, material, and construction. Proper chain selection based on the specific application requirements is necessary to ensure sufficient load-carrying capacity.
  • Installation and Handling: The weight of the chain can influence the ease of installation and handling, especially in larger or heavier chains. Proper lifting and handling equipment should be used to ensure safe installation and prevent injuries.

Overall, while the weight of a drive chain can have some minor influence on its performance in certain applications, it is typically not a critical factor. Factors such as chain design, material, lubrication, tension, and alignment have a more significant impact on the overall performance and reliability of the drive chain.

drive chain

How often should a drive chain be lubricated?

Proper lubrication is essential for maintaining the performance and longevity of a drive chain. However, the frequency of lubrication depends on several factors, such as the application, operating conditions, and the type of lubricant used. Here are some general guidelines:

  • 1. Manufacturer’s Recommendations: Always refer to the manufacturer’s recommendations and guidelines for the specific drive chain you are using. They may provide specific instructions regarding lubrication frequency and the type of lubricant to use.
  • 2. Operating Conditions: Consider the operating conditions in which the drive chain operates. Factors such as temperature, humidity, dust, and exposure to contaminants can affect the lubrication requirements. In harsh or demanding conditions, more frequent lubrication may be necessary.
  • 3. Usage Intensity: The frequency of lubrication can also depend on the intensity of usage. Chains used in high-speed or heavy-duty applications may require more frequent lubrication to maintain optimal performance.
  • 4. Visual Inspection: Regularly inspect the drive chain for signs of inadequate lubrication, such as dryness, rust, or excessive wear. If you notice any of these signs, it may indicate the need for more frequent lubrication.
  • 5. Lubricant Type: The type of lubricant used can also affect the lubrication frequency. Some lubricants provide longer-lasting protection and require less frequent application, while others may need to be applied more regularly.

In general, it is recommended to lubricate a drive chain at least every few hundred miles or operating hours. However, it is crucial to follow the manufacturer’s recommendations and consider the specific operating conditions to determine the appropriate lubrication frequency for your drive chain.

China best 1 Inch Qlp8 Center Guide Hpc6 High Precision Postivie Drive Inverted Tooth Transmission Silent Chain  China best 1 Inch Qlp8 Center Guide Hpc6 High Precision Postivie Drive Inverted Tooth Transmission Silent Chain
editor by CX 2024-05-02