Product Description
Product Description
Free Flow Chian
BS25
| Chain Number | model | Pitch | Roller Dia. (D) | Roller Dia.(d) | Weight(kg/m) |
| BS25-C206B | SKVR25-1905 | 19.05 | 18.3 | 11.91 | 0.52 |
| BS25-C208A | SKVR25-2540 | 25.4 | 24.6 | 15.88 | 0.79 |
| BS25-C212A | SKVR25-3810 | 38.1 | 36.6 | 22.23 | 2.19 |
BS30
| Chain Number | model | Pitch | Roller Dia. (D) | Roller Dia.(d) | Weight(kg/m) |
| BS30-C212A | SKVR30-3810 | 38.1 | 38 | 18 | 2.14 |
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
It is a popular chain used in pallet/tray conveyor system.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Free flow chain is 1 of the major products of Seikonveyor. Its production is finished in automatic factory. In every month CHINAMFG factory supplys over 500000 CHINAMFG free flow chain to the market. Include different materials types: Nylon, steel, stainless steel. and different color: black, blue, brown. Our free flow chain is widely used in automatic conveyor system, especially for different kinds of assembly lines
BS25 free flow chain production view
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
We pick perfect rollers to assemble the free flow chain, to ensure the chain run smooth
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Bulk production makes our free flow chain with competitive price in the martke.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
For bulk order, we provide plywood crate package to protect it from damage during transportation.
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| Material: | Plastic |
|---|---|
| Structure: | Roller Chain |
| Surface Treatment: | Electroplating |
| Chain Size: | 1/2"*3/32" |
| Feature: | Fire Resistant, Oil Resistant, Heat Resistant |
| Pitch: | 38.1 |
| Samples: |
US$ 20/Meter
1 Meter(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

What are the noise and vibration characteristics of roller chains?
Roller chains exhibit specific noise and vibration characteristics during operation. Here’s a detailed answer to the question:
1. Noise Generation: Roller chains can produce noise during operation, especially when operating under certain conditions. The primary sources of noise in roller chains include the interaction between the chain and the sprockets, as well as the impact between the chain pins and the chain guide. The noise level can vary depending on factors such as chain speed, tension, lubrication, alignment, and wear.
2. Vibration: Roller chains can also generate vibrations during operation. These vibrations can be caused by various factors, including the chain’s interaction with the sprockets, chain tension, misalignment, and uneven wear. Excessive vibration can affect the performance and lifespan of the chain and other components in the system. It is important to minimize vibration to ensure smooth and reliable operation.
3. Noise and Vibration Reduction Measures: To mitigate noise and vibration in roller chain systems, several measures can be taken:
- Proper Lubrication: Adequate lubrication reduces friction between the chain and the sprockets, minimizing noise and vibration caused by metal-to-metal contact.
- Alignment and Tension: Ensuring proper alignment and tension of the chain helps to reduce noise and vibration. Misalignment or incorrect tension can lead to increased noise and vibration levels.
- Sprocket Design: The design and condition of the sprockets can affect noise and vibration. Sprockets with worn or damaged teeth can cause increased noise and vibration levels.
- Noise Dampening Elements: Adding noise dampening elements, such as rubber pads or guides, can help reduce the noise generated by the chain’s impact with the chain guides or other components.
- System Design: The overall system design, including the selection of compatible components and proper installation, can contribute to minimizing noise and vibration levels.
It’s important to regularly inspect and maintain the roller chain system to identify and address any sources of noise or excessive vibration. Proper lubrication, alignment, tensioning, and regular replacement of worn components are essential to ensure optimal performance, reduce noise, and minimize vibration in roller chain applications.

How do roller chains handle angular misalignment between sprockets?
Roller chains are designed to accommodate a certain degree of angular misalignment between sprockets. Here’s a detailed answer to the question:
1. Flexibility: Roller chains have inherent flexibility, allowing them to adapt to slight misalignments between sprockets. The chain links can articulate and adjust their position to compensate for the angular misalignment. This flexibility helps to reduce stress on the chain and the sprockets.
2. Chain Articulation: The individual chain links in a roller chain are connected by pins, allowing them to rotate and articulate as the chain engages with the sprockets. This articulation enables the chain to follow the angular movement of the sprockets and maintain proper engagement. It helps to distribute the load evenly across the chain and minimize concentrated stresses on individual chain links.
3. Tolerance for Misalignment: Roller chains have a certain tolerance for angular misalignment between the sprockets. The exact amount of misalignment that a chain can handle depends on factors such as chain size, pitch, and design. However, it’s important to note that excessive misalignment can lead to accelerated wear, increased noise, and reduced chain life.
4. Proper Alignment: While roller chains can tolerate some degree of angular misalignment, it’s still essential to aim for proper sprocket alignment whenever possible. Proper alignment helps to optimize chain performance, minimize wear, and extend the lifespan of the chain and sprockets. Aligning the sprockets correctly ensures that the chain engages smoothly and uniformly with the sprocket teeth, reducing the risk of premature wear or failure.
5. Regular Inspection and Maintenance: To ensure optimal performance and longevity, it’s important to regularly inspect the roller chain system for any signs of misalignment or excessive wear. Routine maintenance, such as lubrication and tension adjustment, helps to mitigate the effects of misalignment and promotes smooth operation.
While roller chains can handle a certain degree of angular misalignment, it’s always recommended to minimize misalignment and strive for proper sprocket alignment to ensure optimal performance, efficiency, and longevity of the chain and sprocket system.

What are the benefits of using a roller chain over a gear drive?
Roller chains offer several advantages over gear drives in various applications. Here’s a detailed answer to the question:
1. Flexibility and Versatility: Roller chains provide greater flexibility and versatility compared to gear drives. They can be easily adjusted and modified to accommodate different shaft distances and angular positions. This flexibility allows for easier customization and adaptation to specific application requirements.
2. Cost-Effectiveness: Roller chains are generally more cost-effective than gear drives. They are simpler in design and construction, resulting in lower manufacturing and maintenance costs. Additionally, roller chains are easier to install, replace, and repair, reducing downtime and associated expenses.
3. Shock Absorption: Roller chains are designed to absorb shock loads and vibrations better than gear drives. The flexibility of the chain links and the ability to rotate on the sprockets allow for better shock absorption, reducing the risk of component failure and increasing overall system durability.
4. High-Speed Capability: Roller chains can handle high-speed applications more effectively than gear drives. They are designed to maintain proper engagement with the sprockets even at high rotational speeds, providing reliable power transmission. Gear drives, on the other hand, may experience issues such as tooth wear and increased noise at high speeds.
5. Lubrication and Maintenance: Roller chains generally require less frequent lubrication compared to gear drives. The rolling action of the chain links distributes the lubricant along the contact surfaces, reducing friction and wear. This results in lower maintenance requirements and increased operational efficiency.
6. Overload Protection: In applications where overload protection is required, roller chains offer an advantage over gear drives. The inherent flexibility of the chain allows for limited slippage or disengagement under excessive loads, protecting the driven machinery from damage. Gear drives, on the other hand, are more prone to sudden failures when subjected to overload conditions.
Overall, roller chains provide a reliable and cost-effective solution for power transmission in various industries. Their flexibility, shock absorption capability, high-speed performance, and ease of maintenance make them a preferred choice over gear drives in many applications.


editor by CX 2024-04-13