Product Description
| Chain No | Pitch | Width Between Inner Plates |
Pin Dia |
Pin Length |
Inner Plate Depth |
Average Tensile Strength |
Weight  |
| Mm | mm | mm | mm | mm | mm | Kn | kg/m |
| 04B-1 | 6.000 | 2.80 | 1.85 | 6.80 | 5.00 | 3.2 | 0.11 |
| 05B-1 | 8.000 | 3.00 | 2.31 | 8.20 | 7.10 | 5.9 | 0.20 |
| *06B-1 | 9.525 | 5.72 | 3.28 | 13.15 | 8.20 | 10.4 | 0.41 |
| 08B-1 | 12.700 | 7.75 | 4.45 | 16.70 | 11.80 | 19.40 | 0.69 |
| 10B-1 | 15.875 | 9.65 | 5.09 | 19.50 | 14.70 | 27.50 | 0.93 |
| 12B-1 | 19.050 | 11.68 | 5.72 | 22.50 | 16.00 | 32.20 | 1.15 |
| 16B-1 | 25.400 | 17.02 | 8.28 | 36.10 | 21.00 | 72.80 | 2.71 |
| 20B-1 | 31.750 | 19.56 | 10.19 | 41.30 | 26.40 | 106.7 | 3.70 |
| 24B-1 | 38.100 | 25.40 | 14.63 | 53.40 | 33.20 | 178.0 | 7.10 |
| 28B-1 | 44.450 | 30.99 | 15.90 | 65.10 | 36.70 | 222.0 | 8.50 |
| 32B-1 | 50.800 | 30.99 | 17.81 | 66.00 | 42.00 | 277.5 | 10.25 |
| 40B-1 | 63.50 | 38.10 | 22.89 | 82.20 | 52.96 | 394.0 | 16.35 |
| 48B-1 | 76.20 | 45.72 | 29.24 | 99.10 | 63.80 | 621.6 | 25.00 |
| 56B-1 | 88.90 | 53.34 | 34.32 | 114.60 | 77.80 | 940.0 | 35.78 |
Our company offers variety of products which can meet your multifarious demands. We adhere to the management principles of “quality first, customer first and credit-based” since the establishment of the company and always do our best to satisfy potential needs of our customers. Our company is sincerely willing to cooperate with enterprises from all over the world in order to realize a CHINAMFG situation since the trend of economic globalization has developed with anirresistible force.
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| Standard or Nonstandard: | Standard |
|---|---|
| Application: | Food Machinery |
| Structure: | Roller Chain |
| Material: | Stainless Steel |
| Type: | Double Pitch Chain |
| Tensile Strength: | High |
| Customization: |
Available
| Customized Request |
|---|

How do roller chains handle side loads?
Roller chains are designed to primarily handle axial (or in-line) loads, which are forces applied along the axis of the chain. However, they do have some capability to handle limited side loads. Here’s a detailed answer to the question:
1. Roller Design: The rollers in a roller chain are cylindrical in shape and rotate freely between the inner and outer plates. This design allows the chain to accommodate limited side loads by allowing the rollers to roll and adjust their position within the chain.
2. Bearing Surfaces: Roller chains have bearing surfaces between the pins and the bushings or rollers. These bearing surfaces help distribute the load and reduce friction, allowing the chain to handle some degree of side loads.
3. Tolerance for Misalignment: Roller chains have some tolerance for misalignment between the sprockets, which can help compensate for minor side loads. However, excessive misalignment can lead to increased wear and decreased chain life.
4. Limitations: It’s important to note that roller chains are primarily designed for transmitting power and handling axial loads. While they can tolerate some side loads, their ability to handle significant side loads is limited. Excessive side loads can cause increased wear, premature chain failure, and reduced overall performance.
To ensure the longevity and reliable performance of a roller chain, it is essential to minimize side loads as much as possible. Proper alignment of the sprockets, appropriate tensioning of the chain, and avoiding excessive side loads are important considerations when using roller chains in an application.

How do roller chains handle backstop or anti-reverse motion?
Roller chains are capable of handling backstop or anti-reverse motion through the use of specific chain attachments or additional components. Here’s a detailed answer to the question:
Backstop or anti-reverse motion is the ability of a system to prevent or control the reverse movement of a load. In applications where roller chains are required to handle backstop or anti-reverse motion, the following methods can be employed:
1. One-Way Clutch: A one-way clutch mechanism can be integrated into the system to allow the roller chain to transmit power in one direction while preventing reverse movement. This mechanism typically consists of a set of sprags or rollers that engage with the sprocket teeth in one direction and disengage in the reverse direction.
2. Ratchet and Pawl System: Another approach is the use of a ratchet and pawl system, where the roller chain is connected to a ratchet wheel with pawls that engage with the teeth of the wheel in one direction, allowing power transmission, and prevent reverse movement when the load tries to rotate in the opposite direction.
3. Overrunning Clutch: An overrunning clutch, also known as a freewheel, can be employed to allow the roller chain to transmit power in one direction and disengage in the reverse direction. This allows for smooth operation in applications where backstop or anti-reverse motion is required.
These mechanisms effectively enable the roller chain to handle backstop or anti-reverse motion by allowing power transmission in one direction and preventing reverse movement. The specific mechanism used depends on the application requirements and the desired level of control over the motion.
It’s important to consult the manufacturer’s guidelines and specifications when implementing backstop or anti-reverse motion in roller chain applications to ensure proper selection and installation of the appropriate mechanisms.

What is a roller chain and how does it work?
A roller chain is a type of transmission chain that is commonly used in various mechanical systems to transmit power and motion between rotating shafts. It consists of a series of interconnected links, including inner plates, outer plates, rollers, and pins. Here’s a detailed answer to the question:
A roller chain operates based on the principle of contact and rolling motion. The basic components of a roller chain include:
- Inner Plates: These are flat metal plates with holes through which the pins pass.
- Outer Plates: These are similar to inner plates and are connected to the inner plates through pins.
- Rollers: The rollers are cylindrical components that are positioned between the inner and outer plates. They have a slightly larger diameter than the pins, allowing them to freely rotate.
- Pins: The pins hold the inner and outer plates together and provide a pivot point for the rollers. They pass through the holes in the inner and outer plates and secure them in place.
When the roller chain is installed in a system, it wraps around a pair of sprockets. The sprockets have teeth that mesh with the rollers of the chain. As one sprocket rotates, it engages with the rollers and pulls the chain along, causing the other sprocket to rotate as well.
The working principle of a roller chain involves the following steps:
- Engagement: The chain is positioned around the sprockets, and the rollers engage with the teeth of the sprockets.
- Tension: The tension in the chain is created by the movement of the sprockets, which causes the chain to wrap tightly around them.
- Rolling Motion: As the sprockets rotate, they impart a rolling motion to the rollers. The rollers, in turn, rotate freely on the pins, allowing the chain to move smoothly along the sprockets.
- Power Transmission: The rotational motion of one sprocket is transferred to the other sprocket through the chain. This enables the transmission of power and motion between the two shafts connected to the sprockets.
Roller chains are widely used in various applications, including machinery, automobiles, motorcycles, bicycles, conveyors, and more. They offer high efficiency, reliability, and the ability to transmit substantial amounts of power. Regular maintenance, including lubrication and periodic inspection, is essential to ensure the proper functioning and longevity of a roller chain.


editor by CX 2024-04-25