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 CZPT situation since the trend of economic globalization has developed with anirresistible force.
Standard or Nonstandard: | Standard |
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Application: | Food Machinery |
Structure: | Roller Chain |
Material: | Stainless Steel |
Type: | Double Pitch Chain |
Function: | Transmisssion |
Customization: |
Available
| Customized Request |
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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.
Can roller chains be used for power transmission in pumps and compressors?
Yes, roller chains can be used for power transmission in pumps and compressors. Here’s a detailed answer to the question:
1. Power Transmission: Roller chains are widely used in various industries for transmitting power between rotating components. In pumps and compressors, roller chains can efficiently transfer power from the motor to the impeller or compressor wheel, enabling the pumping or compression action.
2. Versatility: Roller chains are available in different sizes, pitches, and configurations, making them suitable for various power transmission requirements. They can accommodate a wide range of power levels and speeds, allowing pumps and compressors to operate effectively in different applications and conditions.
3. Load Handling: Pumps and compressors typically involve dynamic loads due to the movement of fluids and gases. Roller chains are designed to handle these dynamic loads effectively. The multiple rollers and pins in the chain distribute the load evenly, minimizing stress concentrations and ensuring smooth power transmission.
4. Durability: Roller chains are known for their durability and resistance to wear. They are designed to withstand demanding operating conditions, including high speeds, fluctuating loads, and exposure to contaminants. Proper lubrication and maintenance further enhance their longevity and reliability in pump and compressor applications.
5. Easy Installation and Maintenance: Roller chains offer ease of installation and maintenance. They can be easily installed, adjusted, and tensioned to ensure proper alignment and operation. Routine maintenance tasks such as lubrication and inspection can help optimize chain performance and identify any potential issues.
It’s important to select the appropriate roller chain based on the specific requirements of the pump or compressor, considering factors such as power transmission capacity, speed, load characteristics, and environmental conditions. Regular inspection and maintenance are crucial to ensure optimal performance and to detect any signs of wear or damage that may require replacement or repair.
What are the key components of a roller chain?
A roller chain consists of several key components that work together to facilitate power transmission. Here’s a detailed answer to the question:
1. Inner and Outer Plates: The inner and outer plates are flat metal plates that form the sides of the roller chain. They provide support and protection to the other components and help maintain the proper spacing between the rollers.
2. Rollers: The rollers are cylindrical components that are positioned between the inner and outer plates. They are responsible for engaging with the sprockets and transmitting power. The rollers rotate freely on the bushings and reduce friction during operation.
3. Bushings: The bushings are cylindrical sleeves that fit inside the rollers. They provide a low-friction surface for the rollers to rotate on and help reduce wear and extend the life of the chain.
4. Pins: The pins are cylindrical metal rods that connect the inner and outer plates. They pass through the bushings and hold the chain together. The pins are press-fitted into the plates and provide a pivot point for the rollers.
5. Link Plates: The link plates are the connecting elements between adjacent chain links. They are the plates that hold the pins in place and provide structural integrity to the chain.
6. Master Link or Connecting Link: The master link, also known as the connecting link, is a special link that allows for easy installation and removal of the roller chain. It typically has a removable pin or clip that enables the chain to be opened and closed without the need for special tools.
These components work together to form a continuous loop that engages with the sprockets and transfers power from one shaft to another. The precise design and construction of these components contribute to the overall strength, durability, and efficiency of the roller chain.
editor by CX 2023-08-02