ISO/ANSI/DIN Standard Short Pitch Precision Stainless Steel Hardware Transmission Motorcycle Industrial Roller Chain
1. Material: Stainless Steel 304 & 316 / Alloy Carbon Steel
2. Surface Treatment: Shot peening / Zinc-plated / Nickel-plated / Dacromet-plated
3. Chain No:
35SS-1, 40SS-1, 50SS-1, 60SS-1, 80SS-1, 100SS-1, 120SS-1, 140SS-1;
35SS-2, 40SS-2, 50SS-2, 60SS-2, 80SS-2, 100SS-2, 120SS-2, 140SS-2;
35SS-3, 40SS-3, 50SS-3, 60SS-3, 80SS-3, 100SS-3, 120SS-3, 140SS-3;
4. Application: Stainless Steel Chains are used in so many industries, such as machine manufacturing, food machine, etc. Also are suitable for high and low temperature conditions.
1. The chain can be used on the both sides of multi-axle transmission.
2. Easy installation and replacement.
3. It can obtain larger reduction ratio.
4. The roller chain has good elasticity, high strength and each hinge part has lubricating oil, so it can be stored easliy. Thus, compared with the rigid contact tooth, it has good cushioning and vibration absorbing ability.
|Product name||Stainless Steel Roller Chain From China|
|Materials Available||1. Stainless Steel: SS304, SS316, etc|
|2. Alloy Steel: 45Mn, 42CrMo, 20CrMo, etc|
|3. OEM according to your request|
|Surface Treatment||Shot peening, Blackening, Oxygenation, Polishing, Zinc-plated, Nickel-plated, Anodized, etc.|
|Characteristic||Fire Resistant, Oil Resistant, Heat Resistant|
|Design criterion||ISO DIN ANSI & Customer’s Drawing|
|Size||Customer’s Drawing & ISO standard|
|Package||Wooden Case / Container and pallet, or made-to-order|
|Advantage||First quality, Best service, Competitive price, Fast delivery|
|Delivery Time||20 days for samples. 45 days for official order.|
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What are the factors to consider when selecting a roller chain for an application?
Choosing the right roller chain for an application involves considering several important factors. Here’s a detailed answer to the question:
1. Load Capacity: The load capacity of the roller chain should match or exceed the maximum anticipated load in the application. Consider the weight and type of the load, as well as any shock loads or dynamic forces that may be present.
2. Speed and RPM: Determine the required speed and RPM (revolutions per minute) of the roller chain. High-speed applications may require special high-speed chains with improved heat dissipation and reduced centrifugal forces.
3. Environment: Assess the operating environment of the application. Consider factors such as temperature, humidity, dust, dirt, chemicals, and exposure to corrosive substances. Choose a roller chain with appropriate corrosion resistance, sealing, lubrication, or protective coatings based on the specific environmental conditions.
4. Length and Pitch: Determine the required length and pitch of the roller chain based on the distance between the sprockets and the desired positioning of the driven and driving components.
5. Maintenance Requirements: Consider the desired maintenance level for the application. Some roller chains may require regular lubrication, while others offer maintenance-free or self-lubricating options. Assess the availability of maintenance resources and the impact of downtime on the overall operation.
6. Compatibility: Ensure compatibility between the roller chain and the sprockets used in the application. The roller chain and sprockets should have matching pitch, tooth profile, and number of teeth to ensure proper engagement and smooth operation.
7. Certification and Standards: In certain industries, compliance with specific certifications or standards may be required. Consider whether the roller chain meets industry-specific requirements such as ISO, ANSI, or industry-specific regulations.
8. Cost and Availability: Evaluate the cost and availability of the roller chain, including factors such as initial purchase price, long-term maintenance costs, and the availability of spare parts or replacement chains.
By carefully considering these factors and consulting with experts or manufacturers, you can select the most suitable roller chain for your specific application, ensuring reliable and efficient power transmission.
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.
How do roller chains handle shock loads?
Roller chains are designed to handle a certain level of shock loads, but their ability to withstand and absorb shocks depends on several factors. Here’s a detailed answer to the question:
1. Chain Design: The design of roller chains includes various elements that contribute to their ability to handle shock loads. These elements include the shape and size of the rollers, the pitch of the chain, and the material used for construction. High-quality roller chains are engineered to provide durability and strength, allowing them to withstand sudden impacts and shocks.
2. Material Selection: The choice of materials for roller chains plays a significant role in their ability to handle shock loads. Chains made from high-quality alloy steels or special heat-treated steels offer better toughness and resistance to impact. The material properties, including hardness and tensile strength, are important considerations in determining the chain’s ability to handle shock loads.
3. Chain Tension: Proper chain tension is crucial for handling shock loads effectively. Adequate tension ensures the chain remains engaged with the sprockets during sudden changes in load or direction. Insufficient tension can lead to chain slippage or disengagement, resulting in increased shock loads on the chain links. Regular inspection and adjustment of chain tension help maintain optimal performance.
4. Lubrication and Maintenance: Proper lubrication is essential for reducing friction and wear, especially when dealing with shock loads. Adequate lubrication ensures smooth movement of the chain and minimizes the impact of shocks on the chain’s components. Regular maintenance, including cleaning and relubrication, helps prolong the chain’s lifespan and ensures its ability to handle shock loads.
While roller chains are designed to handle a certain level of shock loads, it is important to consider the specific requirements of the application. In situations where high shock loads are expected, additional measures such as using shock-absorbing devices, selecting chains with higher load capacities, or implementing buffering systems may be necessary to protect the chain and ensure reliable operation.
editor by CX 2023-09-25