China factory 530 X 120 Motorcycle Drive Chain with Master Link

Product Description

530 X 120 Motorcycle Drive Chain With Master Link

The motorcycle chains use the advanced equipments, such as
400T PUNCH
500 T PUNCH
ULTRASONIC CLEANOUT MACHINE
HIGH SPEED PUNCH
PRE-STRESING CHAIN
AUTO OILING LINE

We own the sophisticated equipment and the advanced technology, such as: 
1. CAD Designer
2. Wire Cutting Machine
3. Chain Running In Machine
4. Conveyor Furance
5. Ball Drift
6. Shot Peened Parts
7. Design Of Link Plate Waist

Pack Detail:Polybag+Box+Case

Company Detail:

Choose TAI

1.TAI with sophisticated CNC equipment, advanced technology and perfect inspection equipment produce all kinds of chains, sprockets and other transmission equipments which can make the customers’ trust. The company since its establishment has passed ISO9001 and other certifications.

2.”High quality, high benefit, high standards” to sing more integrated into the world. Adhering to the “good faith service to customers” purposes, from being in order to after-sales service, each bit closely link, TAI will provide the most intimate, comprehensive service.

3.”Meet the customers’ requirement, until customers’ satisfaction” is our goal from start to finish, better innovation and better cooperation can create better TAI to service the world. Let us work together, to create a better future with each other.

4.The Packaging According To the Customers’ requirements

 

Chain No Pitch
(mm)
Weight per meter
(kg/m)
25H 6.35 0.17
219 7.774 0.27
270 8.50 0.33
420 12.70 0.55
428 12.70 0.66
428H 12.70 0.79
520 15.875 1.00
530 15.875 1.06

      
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Usage: Transmission Chain
Material: Carbon Steel
Surface Treatment: Polishing
Feature: Heat Resistant
Chain Size: All
Structure: Roller Chain
Samples:
US$ 0/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

drive chain

How does the design of a drive chain affect its efficiency and performance?

The design of a drive chain plays a crucial role in determining its efficiency and performance characteristics. Here is a detailed explanation:

The efficiency and performance of a drive chain are influenced by several design factors that are carefully considered during its development:

  • Chain Pitch and Size: The pitch and size of the chain links affect the load-carrying capacity, efficiency, and overall performance of the drive chain. A proper balance must be struck between chain size and strength to ensure optimal power transmission while minimizing friction and energy losses.
  • Roller Design: The shape and dimensions of the chain’s rollers impact its efficiency and performance. Well-designed rollers reduce friction and wear by promoting smooth rolling motion between the chain and the sprocket teeth. They also contribute to improved power transmission and reduced noise levels.
  • Plate and Pin Design: The shape and material of the chain’s plates and pins influence its strength, durability, and flexibility. Properly designed plates and pins ensure reliable power transmission, resistance to wear, and the ability to accommodate shock loads and varying torque conditions.
  • Sprocket Profile and Tooth Design: The design of the chain’s sprockets is critical for efficient power transmission. Sprockets with accurately machined teeth and suitable profiles minimize friction, ensure proper engagement with the chain, and facilitate smooth chain articulation. Well-designed sprockets reduce wear, noise, and energy losses.
  • Lubrication Features: Drive chain design often incorporates lubrication features such as oiling holes or grooves to facilitate proper lubricant distribution along the chain’s moving parts. Well-designed lubrication features ensure effective lubrication, reduce friction, prevent wear, and enhance the chain’s overall efficiency and lifespan.
  • Material Selection: The choice of materials for the chain’s components, such as the rollers, plates, pins, and bushings, significantly impacts its efficiency and performance. The selected materials must possess appropriate strength, wear resistance, and fatigue resistance to withstand the operating conditions and demands of the application.
  • Tensioning and Adjustment Mechanisms: Drive chain design often includes mechanisms for tensioning and adjusting the chain’s tension. Properly designed tensioning systems ensure optimal chain tension throughout its operation, promoting efficient power transmission, reducing chain vibration, and extending the chain’s service life.

A well-designed drive chain minimizes energy losses due to friction, reduces wear, and optimizes power transmission efficiency. It provides smooth and reliable operation, reduces noise levels, and contributes to the overall performance and longevity of the power transmission system.

It is important to note that drive chain design should consider the specific requirements and constraints of the application, including load capacity, speed, environmental conditions, and maintenance considerations. Regular inspection, lubrication, and proper tensioning are essential for maintaining the efficiency and performance of the drive chain over time.

By incorporating efficient design principles and considering the various factors that influence performance, manufacturers can produce drive chains that offer high efficiency, reliable power transmission, extended service life, and optimal performance in their intended applications.

drive chain

Can a drive chain be used in a food processing or packaging application?

Yes, a drive chain can be used in food processing and packaging applications, provided that certain considerations are taken into account. Here is a detailed explanation:

In food processing and packaging applications, where hygiene, cleanliness, and compliance with food safety regulations are crucial, drive chains offer several benefits:

  • Reliable Power Transmission: Drive chains provide efficient and reliable power transmission, making them suitable for various applications in food processing and packaging machinery, such as conveyors, mixers, filling machines, and labeling equipment.
  • Corrosion Resistance: To ensure compliance with hygiene standards, it is essential to select drive chains made from materials that are resistant to corrosion, such as stainless steel or food-grade plastic. These materials can withstand frequent cleaning, exposure to water, and the corrosive effects of certain food products or cleaning agents.
  • Easy Cleaning and Maintenance: Drive chains designed for food applications often feature smooth surfaces and easy-to-clean designs, minimizing the risk of food buildup or contamination. They can be cleaned using standard cleaning methods and equipment, allowing for efficient sanitation and reducing the chances of foodborne contamination.
  • Compliance with Food Safety Regulations: When using drive chains in food processing or packaging applications, it is essential to ensure compliance with food safety regulations, such as FDA (Food and Drug Administration) guidelines or other relevant standards specific to the industry or region. This includes selecting materials that are approved for food contact and implementing proper cleaning and maintenance procedures.
  • Product Handling: Drive chains can handle various types of food products, including dry goods, packaged items, or even delicate food items, depending on the specific chain design and application requirements. Specialized chains with attachments or gripper systems can be used to securely transport and manipulate food products during processing or packaging.

It is important to work with reputable chain manufacturers or suppliers who offer drive chains specifically designed for food processing and packaging applications. They can provide guidance on chain selection, material compatibility, compliance with food safety regulations, and maintenance practices.

By considering these factors and implementing proper chain selection, installation, cleaning, and maintenance procedures, drive chains can be safely and effectively utilized in food processing and packaging applications while ensuring product quality, hygiene, and compliance with food safety standards.

drive chain

What is a drive chain and how does it work?

A drive chain is a mechanical component used to transmit power from one part of a machine or system to another. It typically consists of a series of interconnected links or rollers that form a flexible and durable mechanism. Drive chains are commonly used in various applications, including bicycles, motorcycles, industrial machinery, and automotive systems.

The working principle of a drive chain involves the transfer of rotational motion or power from a driving sprocket or gear to a driven sprocket or gear. Here is a step-by-step explanation of how a typical drive chain works:

  1. The driving force is applied to the first component of the drive chain, usually a sprocket.
  2. As the driving sprocket rotates, it engages with the links or rollers of the chain.
  3. The driving force is transferred from the driving sprocket to the chain links or rollers.
  4. The chain links or rollers transmit the rotational motion to the driven sprocket.
  5. The driven sprocket, connected to the driven component, rotates and transfers the power to the intended mechanism, such as wheels or other moving parts.

The efficiency and performance of a drive chain depend on factors such as the quality of the components, proper lubrication, tension adjustment, and maintenance. It is crucial to ensure the chain is properly aligned and tensioned to minimize wear and maximize power transfer.

Overall, drive chains play a vital role in power transmission by efficiently transferring rotational motion from one component to another, enabling the operation of various mechanical systems.

China factory 530 X 120 Motorcycle Drive Chain with Master Link  China factory 530 X 120 Motorcycle Drive Chain with Master Link
editor by CX 2024-01-05

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