Product Description
Professionally manufacture all good quality chains.Products are made of high quality alloy steel production. The plates are punched and squeezed bores by precision technology. roller chian are machined by high-efficiency automatic equipment and automatic grinding equipment, then through heat treatment of carburization, carbon and nitrogen protection mesh belt furnace, surface blasting process etc. Assembled precision by Internal hole position, spin riveted by pressure to ensure the performance of the entire chain
This standard roller chain is a long life chain that will work with standard sprockets on agricultural and industrial equipment.Features:
Meets ASME/ANSI B29.1 standards Chain is pre lubricated for wear resistance Pitch 1/2″ Length: 10′ Shot peened during production
to increase metal fatigue resistance For use in agricultural and industrial equipment.
Tensile strength: 2,830 lbs.
Roller Diameter: 0.306.
Roller Width: 0.246.
Pin Diameter: 0.141.
Link Plate Thickness: 0.050.
Link Plate “H”: 0.390.
Pin Length “R”: 0.541.
1.Superior quality,high performance durability,reasonable price;
2.Fine workmanship, beautiful packing ,strong market demanding;
1) OEM quality standard quaranteed
2) Long Lasting working life time
3) Positive customer feedback from overseas and domestic markets
4) Professional machinery parts manufacturer for 14 years
5) Competitive price
6) Supplies machinery parts made to customer specifications and drawings
7) Sample purpose order accepted
8) Ready for serve all of you around the word , any time
1. We are a manufacturer.
2. We have about 30 years experience of making chains and chain links.
3. Our design team has extensive experience in the chain design.
4. Best service and prompt delivery.
5. We offer various styles, size and colors to meet your requirement.
6. We covering a production area of 18750 square CHINAMFG have more than 200 employees and we have a complete set of testing equipment to ensure our qualit
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Standard or Nonstandard: | Standard |
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Application: | Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Marine, Mining Equipment, Agricultural Machinery, Car |
Surface Treatment: | Polishing |
Structure: | Roller Chain |
Material: | Stainless Steel |
Type: | Short Pitch Chain |
Samples: |
US$ 0/Meter
1 Meter(Min.Order) | |
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Customization: |
Available
| Customized Request |
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How does the design of a drive chain affect its efficiency and performance?
The design of a drive chain plays a crucial role in determining its efficiency and performance characteristics. Here is a detailed explanation:
The efficiency and performance of a drive chain are influenced by several design factors that are carefully considered during its development:
- Chain Pitch and Size: The pitch and size of the chain links affect the load-carrying capacity, efficiency, and overall performance of the drive chain. A proper balance must be struck between chain size and strength to ensure optimal power transmission while minimizing friction and energy losses.
- Roller Design: The shape and dimensions of the chain’s rollers impact its efficiency and performance. Well-designed rollers reduce friction and wear by promoting smooth rolling motion between the chain and the sprocket teeth. They also contribute to improved power transmission and reduced noise levels.
- Plate and Pin Design: The shape and material of the chain’s plates and pins influence its strength, durability, and flexibility. Properly designed plates and pins ensure reliable power transmission, resistance to wear, and the ability to accommodate shock loads and varying torque conditions.
- Sprocket Profile and Tooth Design: The design of the chain’s sprockets is critical for efficient power transmission. Sprockets with accurately machined teeth and suitable profiles minimize friction, ensure proper engagement with the chain, and facilitate smooth chain articulation. Well-designed sprockets reduce wear, noise, and energy losses.
- Lubrication Features: Drive chain design often incorporates lubrication features such as oiling holes or grooves to facilitate proper lubricant distribution along the chain’s moving parts. Well-designed lubrication features ensure effective lubrication, reduce friction, prevent wear, and enhance the chain’s overall efficiency and lifespan.
- Material Selection: The choice of materials for the chain’s components, such as the rollers, plates, pins, and bushings, significantly impacts its efficiency and performance. The selected materials must possess appropriate strength, wear resistance, and fatigue resistance to withstand the operating conditions and demands of the application.
- Tensioning and Adjustment Mechanisms: Drive chain design often includes mechanisms for tensioning and adjusting the chain’s tension. Properly designed tensioning systems ensure optimal chain tension throughout its operation, promoting efficient power transmission, reducing chain vibration, and extending the chain’s service life.
A well-designed drive chain minimizes energy losses due to friction, reduces wear, and optimizes power transmission efficiency. It provides smooth and reliable operation, reduces noise levels, and contributes to the overall performance and longevity of the power transmission system.
It is important to note that drive chain design should consider the specific requirements and constraints of the application, including load capacity, speed, environmental conditions, and maintenance considerations. Regular inspection, lubrication, and proper tensioning are essential for maintaining the efficiency and performance of the drive chain over time.
By incorporating efficient design principles and considering the various factors that influence performance, manufacturers can produce drive chains that offer high efficiency, reliable power transmission, extended service life, and optimal performance in their intended applications.
Can a drive chain be used in a marine or offshore environment?
Yes, drive chains can be used in marine or offshore environments with proper considerations and appropriate chain selection. Here is a detailed explanation:
In marine or offshore applications, where machinery and equipment operate in challenging conditions such as saltwater exposure, humidity, and corrosive environments, the use of drive chains requires specific measures:
- Corrosion Resistance: When selecting a drive chain for marine or offshore environments, it is crucial to choose a chain made from corrosion-resistant materials such as stainless steel or coated chains. These materials can withstand the corrosive effects of saltwater and other harsh elements.
- Sealing and Protection: Additional sealing and protection measures can be employed to safeguard the chain from water ingress and contamination. This may include the use of protective covers, seals, or enclosures to prevent direct exposure to seawater and other corrosive substances.
- Lubrication: Regular and appropriate lubrication is vital to protect the chain against corrosion and ensure smooth operation. Lubricants specifically designed for marine or offshore applications should be used to withstand the demanding conditions and provide effective protection.
- Maintenance: A comprehensive maintenance program is essential for maximizing the lifespan of a drive chain in marine or offshore environments. Regular inspection, cleaning, lubrication, and monitoring of the chain’s condition are necessary to identify and address any signs of corrosion, wear, or damage.
- Environmental Considerations: Factors such as saltwater spray, wave impact, vibration, and temperature variations should be taken into account when designing and operating the machinery and equipment. Adequate shielding, proper drainage, and suitable ventilation can help mitigate the potential detrimental effects on the drive chain.
By considering these factors and implementing appropriate measures, drive chains can be successfully utilized in marine or offshore environments, providing reliable power transmission in applications such as ship propulsion systems, offshore drilling rigs, marine winches, and more.
How does a drive chain differ from a timing belt?
A drive chain and a timing belt are both components used in power transmission, but they differ in their construction, operation, and application. Here are the key differences between a drive chain and a timing belt:
- Construction: A drive chain consists of interconnected links or rollers, typically made of steel, that form a flexible mechanism. In contrast, a timing belt is a toothed belt made of a reinforced rubber material with teeth on the inner surface.
- Power Transmission: Drive chains are commonly used for transmitting power in applications where flexibility and high-load capacity are required, such as in vehicles, machinery, and industrial equipment. Timing belts, on the other hand, are primarily used for precise synchronization of engine components, such as camshafts and crankshafts, in internal combustion engines.
- Motion and Operation: Drive chains transfer power through rotational motion. The engagement of the chain links with sprockets allows for the transfer of rotational force. Timing belts, on the other hand, rely on the meshing of teeth on the belt with grooves or pulleys to ensure precise timing and synchronization of the engine’s internal components.
- Maintenance and Tension: Drive chains require periodic lubrication and tension adjustment to ensure proper operation and minimize wear. Timing belts, on the other hand, are typically maintenance-free and do not require lubrication or frequent tension adjustments.
- Noise and Vibration: Drive chains, especially roller chains, can generate more noise and vibration during operation compared to timing belts, which are designed to operate with reduced noise and vibration.
- Replacement: In case of damage or wear, drive chains can be repaired by replacing individual links or sections. Timing belts, on the other hand, usually require complete replacement as they are not easily repairable.
Ultimately, the choice between a drive chain and a timing belt depends on the specific application requirements, such as the need for power transmission, precision timing, load capacity, maintenance preferences, and operational conditions.
editor by CX 2024-04-11