Product Description

Product Parameters


Product Name

Motorcycle Gear & Chain Kit 530 


Alloy Steel

Chain NO


Pitch (mm)


Bush Type




Pin Dia.(mm)


Pin Length(mm)


Roller Dia(mm)


Plate Thickness Inner(mm)


Plate Thickness Outer(mm)


Tensile Strength(kn)





Product Details


  • SFR Super O-Ring chain is a light-weight design of high-performance sealing chain, maintaining maximum strength while reducing the chain width and weight. The optimized O-ring overcomes the shortcomings of ordinary sealing chain, offering 150% lifespan of ordinary O-ring.
    Silver outer + black inner, CHINAMFG outer + black inner colour configurations available. migh wear-resistant, maintenance-free lubrication , low cost O-rings


Product Packing

Semi-Automatic PET Bottle Blowing Machine Bottle Making Machine Bottle Moulding Machine PET Bottle Making Machine is suitable for producing PET plastic containers and bottles in all shapes.

Product Usage


We strongly recommends you to lubricate a new connecting link before connecting both ends of the new chain(Fig. B) Clip type connecting link (FJ,RJ) The open end of the clip must be set opposite the chain drive direction(Fig. C). FJ type connecting link has Press Fit Outer Plates that require SFR Cutting &Riveting Tool to press on the side plates. Rivet type connecting link(ZJ) Use MOTOMAX KM500R Cutting & Riveting Tool to press fit connecting link plates and precisely rivet pin head by flare dimensions we recommend. 5.For chain sag adjustment, follow the recommendation in motorcycle owner’s manual. Standard chain sag with the load of riders is 10 mm(Fig. D).


1.Be sure to consult your distributor / local dealer or check with SFR chain catalogue or application chart whether this chain and connecting link are applicable for your motorcycle. Improper selection and use may cause serious damage or injury.

2.Cut the old chain at its joint part. If your motorcycle came with an endless chain or a chain with Rivet type connecting link(ZJ), use SFR Cutting & Riveting Tool or similar cutting tool.

3.Fit the new chain to the end of the old one, using a new connecting link. By turning the rear wheel, the new chain will come in position(Fig. A) 


  • Motorcycle Chain Handing Instructions

Drive chain is a critical safety part for motorcycle driving. To ensure safe drive, you are kindly requested to peruse and observe your motorcycle owner’s manual and the following instructions.


Company Introduction

SFR Chain Group has been pushing its way to the leading positions in the industrial chain industry since last century.

With stringent quality controls, we strive to exceed our customers’ expectations in terms of quality and service. Our products aresold to more than 80 countries in every industry that requires moving, conveying, lifting or transmitting power.





Our Services & Strength

With a monthly production output of over 2.2 million pieces, SFR motorcycle chain is the cornerstone of the group. As 1 of theWorld’s top manufacturers of motorcycle chain, we serve some of the largest brands in the automotive sector and within our widerange there is always a chain to go with every power and use, from urban mopeds to high powered racing motorbikes, dirt bikes orATV quads.


SFR operates 4 fully owned factories and 1 joint venture, certified by ISO9001 and IATF 16949 Quality Management System. Ourcommitment to R&D led SFR to establish stable cooperation with several CHINAMFG universities and research institutes in China,as well as setting up an Intelligent Chain Drive Research Center within the group, altogether resulting in its more than 70
patents. This allows us to offer the widest range of power transmission and conveyor chain at the most competitive prices.We at SFR Chain always adhere to the group’s spirit of integrity, efficiency and innovation: “We strive to offer the best productsand service to our customers”.

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Warranty: 1 Year Guarantees
Type: Motorcycle Chain
Material: Alloy Steel
Certification: ISO9001:2001, CE
Number of Row: Single/Double/Triplex
Surface Treatment: Zinc Plated, Gold Coated, Copper Coated
US$ 5/Piece
1 Piece(Min.Order)

Request Sample



Customized Request

transmission chain

Can transmission chains be used in textile or weaving equipment?

Yes, transmission chains can be used in textile or weaving equipment. Here’s a detailed answer to the question:

Textile and weaving equipment often require reliable and efficient power transmission systems to drive various components and mechanisms. Transmission chains are well-suited for these applications due to their durability, strength, and versatility.

Transmission chains are commonly used in textile and weaving equipment for the following purposes:

1. Power Transmission: Transmission chains transfer rotational power from the motor to different components in the textile or weaving machine. They are used to drive the main shaft, loom mechanisms, take-up reels, warp beams, and other moving parts.

2. Tensioning and Positioning: In weaving machines, transmission chains are employed to maintain proper tension in the warp threads. They help in accurately positioning the warp beam and maintaining a consistent tension throughout the weaving process.

3. Shedding Mechanisms: In jacquard looms and other advanced weaving machines, transmission chains play a vital role in operating the shedding mechanisms. These mechanisms control the raising and lowering of warp threads to create patterns and designs in the fabric.

4. Yarn Feeding: Transmission chains are used to drive yarn feeding mechanisms, such as yarn carriers or yarn guides, ensuring a steady and controlled feed of yarn during the weaving process.

5. Synchronization: In complex textile machines, transmission chains are used to synchronize the movement of different machine components. This helps in achieving precise coordination between the loom mechanisms, beating-up action, weft insertion, and other critical operations.

The advantages of using transmission chains in textile or weaving equipment include:

– High durability and resistance to wear, allowing for extended service life even in demanding textile manufacturing environments.

– Ability to handle high loads and transmit power efficiently, enabling the smooth operation of various machine components.

– Versatility to accommodate different weaving techniques, loom sizes, and machine configurations.

– Availability of a wide range of chain types, sizes, and materials to suit specific application requirements.

– Easy maintenance and replacement, ensuring minimal downtime and efficient production.

Overall, transmission chains are an essential component in textile and weaving equipment, providing reliable power transmission, precise synchronization, and efficient operation. Manufacturers and designers of textile machinery often integrate transmission chains into their equipment to ensure consistent and high-quality fabric production.

transmission chain

How does the choice of material impact the performance of a transmission chain?

The choice of material for a transmission chain plays a crucial role in its overall performance and durability. Here’s a detailed answer to the question:

1. Strength and Load Capacity: Different materials have varying levels of strength and load-carrying capacities. High-strength materials like alloy steel or stainless steel offer superior strength and can withstand heavy loads. The choice of a material with adequate strength ensures that the transmission chain can handle the required load without premature wear or failure.

2. Wear Resistance: The material used in the construction of a transmission chain affects its wear resistance. Some materials, such as hardened steel or certain alloys, have excellent wear resistance properties, allowing the chain to withstand abrasive conditions and prolong its lifespan. Choosing a material with good wear resistance reduces the need for frequent chain replacements and maintenance.

3. Corrosion Resistance: In environments where corrosion is a concern, such as outdoor or corrosive industrial settings, selecting a material with high corrosion resistance is essential. Stainless steel or specially coated chains offer excellent resistance to rust and corrosion, ensuring reliable performance and longevity even in harsh conditions.

4. Fatigue Strength: The material’s fatigue strength is crucial in applications where the transmission chain undergoes repeated cyclic loading. Fatigue failure can occur when a chain is subjected to continuous stress cycles, leading to cracks and eventual failure. Materials with high fatigue strength, such as specific alloys or heat-treated steels, are ideal for applications that require excellent fatigue resistance.

5. Temperature Resistance: The operating temperature of an application can impact the choice of material for a transmission chain. Some materials, such as heat-treated steels or specialized alloys, can withstand high-temperature environments without losing their mechanical properties. In contrast, certain plastics or polymers may be suitable for low-temperature applications. Choosing a material that can withstand the expected temperature range ensures optimal performance and prevents premature chain failure.

6. Cost Considerations: The choice of material also involves cost considerations. Some high-performance materials, such as stainless steel or specialized alloys, may have a higher initial cost compared to standard carbon steel chains. However, the increased performance, longevity, and reduced maintenance requirements provided by these materials may result in long-term cost savings.

It’s important to carefully assess the specific requirements of the application, including load capacity, environmental conditions, and operating parameters, when choosing the material for a transmission chain. Consulting with industry experts or manufacturers can help determine the most suitable material for optimal chain performance and longevity.

transmission chain

What materials are commonly used in manufacturing transmission chains?

Transmission chains are manufactured using various materials, each offering different properties and advantages. The choice of material depends on the specific application requirements, including load capacity, wear resistance, and environmental conditions. Here are some commonly used materials in the manufacturing of transmission chains:

  • Carbon Steel: Carbon steel is a popular choice for transmission chains due to its excellent strength, durability, and affordability. It provides good wear resistance and can handle moderate loads.
  • Stainless Steel: Stainless steel chains are highly resistant to corrosion and offer superior durability in challenging environments. They are commonly used in industries where cleanliness and hygiene are critical, such as food processing and pharmaceuticals.
  • Alloy Steel: Alloy steel chains are alloyed with various elements to enhance their mechanical properties. They offer higher strength, increased wear resistance, and improved fatigue resistance compared to carbon steel chains.
  • Plastic: Plastic chains are lightweight, corrosion-resistant, and offer excellent chemical resistance. They are often used in applications where noise reduction, low friction, or non-magnetic properties are required.
  • Non-metallic Composites: Non-metallic composite chains are made from materials such as fiberglass, carbon fiber, or Kevlar. These chains offer high strength-to-weight ratios, exceptional chemical resistance, and low friction characteristics.

It’s important to select the appropriate chain material based on the specific operating conditions and requirements of the application. Factors such as load capacity, speed, environmental conditions, and maintenance considerations should be taken into account when choosing the material for a transmission chain.

China high quality Motorcycle Transmission Chain X-Ring Super Heavy Duty X-Ring Chain with Connecting Link  China high quality Motorcycle Transmission Chain X-Ring Super Heavy Duty X-Ring Chain with Connecting Link
editor by CX 2024-05-07