Product Description
Product Description
Colored O-Ring Chain and X-Ring Chain (420, 428, 520 etc.)
X-ring chains and O-ring chains :420\428\428H\520\520H
O-ring chain is mainly suitable for the adverse environment, such as water,mud,or dust.So It ‘s more demanding for its performance.And the service life is about 3-5 times than standard chains
1. The “O” ring or “X” ring will greatly reduce the wearing.
2. Model: 420V, 428V, 428VM, 520V, 428V-X, 428VM-X, 520V-X, 420Hz, 428Hz, 520NZ,
3. Color: Self, gold, nickel, blue, red, orange, green, yellow, pink etc.
4. Certificate of Quality: ISO 9001: 2000,
5. The grease is made in USA.
6. O-ring and X-ring are made in Tianwan.
7. The chains have high tensile strength.
8. Quad-rited pins(pitch≥ 15.875mm)
9. The sealing performance of X-ring is better than O-ring.
Products are made of high quality alloy steel production. The plates are punched and squeezed bores by precision technology. The pin, bush, roller 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.
Company introduction
DINGJIAN WHEEL Co., Ltd locates in Xihu (West Lake) Dis.qiao Industrial Zone which is renowned for the base of China Motorcycle Sprockets Manufacturing. Our company is a typical manufacturing enterprise with designing, manufacturing and selling as a whole service chain.
DINGJIAN WHEEL Co., Ltd was set up in 1996, covering a total land of 12,000 square CZPT and a constructive area of 8,000 square meters. Under a total investment of 20 million RMB yuan, our company owns the most advanced production equipments, perfect quality inspection system, highly efficient sales and management team and first-class technicians; since we adopt advanced production techniques and superior steel, our products have reached high standard of durability and a series of advanced national level. As our products passed the authentication of global ISO9001 quality system, our company has the power of manufacturing a complete set of sprocket products to fit the needs of motorcycle factories.
Since the founding of CZPT WHEEL Co., Ltd, we uphold consistently the principles of laying full emphasis on needs of consumers, products’quality and commercial creditability; stressing the idea of common business aim, business starting, mutual benefits and developments, for building up Double Win relation with clients;our company has won the trust of a wide range of clients by competitive price and better service, this is why our company obtains better goodwill in this sprocket industry with our products selling well China-wide. and selling far to many regions like South-East Asia. Middle-East. South-America. Africa Europe and so on.
For many years, CZPT WHEEL Co., Ltd insisted on a development policy of Enterprise’ Life Relies on Products’ Quality, we are succeed in fulfilling our famous brand position. DINGJlAN people have confidence in our prosperous development, we will believe in the idea of Brand Relies on Quality, and Effectiveness Depends on Scale. By upholding our development idea, we can achieve our CZPT task of becoming leader in sprockets’ industry by persisting in our quality and management idea permanently. DINGJIAN WHEEL Co., Ltd is expecting your cooperation for mutual benefit producing.
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Shipping Cost:
Estimated freight per unit. |
To be negotiated |
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Usage: | Transmission Chain, Conveyor Chain |
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Material: | Iron |
Surface Treatment: | Oil Blooming |
Samples: |
US$ 10/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
| Customized Request |
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Factors Affecting the Efficiency of a wheel sprocket Setup
Several factors can influence the efficiency of a wheel sprocket system in power transmission and motion control applications. These factors should be carefully considered and optimized to ensure the system’s overall effectiveness and performance:
- 1. Friction: Friction between the wheel, sprocket, and the chain or belt can lead to energy losses. Using high-quality materials and lubrication can help reduce friction and improve efficiency.
- 2. Alignment: Proper alignment between the wheel and the sprocket is critical. Misalignment can cause increased wear, noise, and reduced efficiency. Regular maintenance and alignment checks are essential.
- 3. Tension: The correct tension in the chain or belt is crucial for efficient power transmission. Too loose or too tight tension can lead to performance issues and premature wear.
- 4. Material and Design: The choice of materials for the wheel sprocket, as well as their design, can impact efficiency. High-quality materials and well-engineered components reduce wear and improve overall system performance.
- 5. Load Distribution: Uneven load distribution across the wheel sprocket can lead to localized wear and decreased efficiency. Ensuring proper load distribution helps maintain uniform wear and power transmission.
- 6. Environmental Factors: Harsh environmental conditions, such as dust, moisture, and extreme temperatures, can affect the efficiency of the system. Choosing suitable materials and implementing protective measures can mitigate these effects.
- 7. Maintenance: Regular maintenance, including lubrication, inspection, and timely replacement of worn components, is vital for the long-term efficiency of the system.
- 8. Speed and Torque: The operating speed and torque requirements of the application should be considered when selecting the appropriate wheel sprocket size and specifications.
- 9. Chain or Belt Type: Different types of chains or belts, such as roller chains, silent chains, or toothed belts, have varying efficiencies. Choosing the right type for the specific application is crucial.
- 10. System Integration: The wheel sprocket system should be integrated correctly with other components in the machinery to ensure smooth operation and minimal energy losses.
By carefully considering and optimizing these factors, it is possible to improve the efficiency of the wheel sprocket system, leading to reduced energy consumption, less wear and tear, and overall better performance.
Using wheel sprocket Assembly in Robotics and Automation
Yes, wheel sprocket assemblies are commonly used in robotics and automation systems to transmit power and facilitate movement. These systems offer several advantages for robotic applications:
- Efficiency: wheel sprocket assemblies provide efficient power transmission, ensuring smooth and precise movement of robotic components.
- Compact Design: The compact nature of sprockets and wheels allows for space-saving designs, making them ideal for robotic applications where space is limited.
- Precision: Sprockets and wheels with accurate teeth profiles provide precise motion control, crucial for robotics and automation tasks that require high levels of accuracy.
- Low Noise: Properly lubricated and maintained wheel sprocket systems generate minimal noise during operation, contributing to quieter robotic movements.
- Customizability: wheel sprocket assemblies can be customized to suit specific robotic requirements, such as different gear ratios, sizes, and materials.
- Multiple Configurations: Depending on the robotic application, different configurations like single or multiple sprockets, idler sprockets, or rack and pinion systems can be used.
- High Load Capacity: Sprockets made from durable materials like steel can handle substantial loads, making them suitable for heavy-duty robotic tasks.
Examples of robotics and automation systems that commonly use wheel sprocket assemblies include:
- Robotic Arms: wheel sprocket systems are utilized in robotic arms to control their movement and reach.
- Automated Guided Vehicles (AGVs): AGVs use wheel sprocket assemblies for propulsion and steering, enabling them to navigate autonomously.
- Conveyor Systems: In automated factories, conveyor belts are often driven by sprockets and wheels for efficient material handling.
- Mobile Robots: Wheeled mobile robots use wheel sprocket assemblies to drive their wheels, enabling them to move in various directions.
- Robot Grippers: wheel sprocket mechanisms can be integrated into robot grippers to facilitate gripping and handling objects.
The choice to use wheel sprocket assemblies in robotics and automation depends on the specific application requirements, load capacity, precision, and environmental conditions. By selecting the appropriate sprockets, wheels, and materials, engineers can ensure reliable and efficient robotic performance in a wide range of automated tasks.
Common Applications of Wheels and Sprockets in Machinery
Wheels and sprockets are crucial components used in various machinery and mechanical systems for power transmission, motion control, and mechanical advantage. Some common applications include:
1. Vehicles:
Wheels and sprockets are extensively used in vehicles, including automobiles, motorcycles, bicycles, and even heavy-duty trucks and construction equipment. Sprockets and chains are commonly found in motorcycles and bicycles for power transmission from the engine or pedals to the wheels.
2. Industrial Machinery:
In industrial settings, wheels and sprockets play a vital role in conveyor systems, where they are used to move materials or products along a production line. Sprockets are also employed in various machinery to transfer rotational motion and power between components.
3. Agricultural Equipment:
Agricultural machinery often relies on wheels and sprockets for functions such as driving tractors, operating harvesting equipment, and propelling irrigation systems.
4. Robotics:
Wheels and sprockets are commonly used in robotic systems to provide mobility and movement capabilities. Sprockets and chains or belts are used in robotic arms and joints to facilitate precise and controlled motion.
5. Material Handling:
Conveyor systems in warehouses and distribution centers utilize wheels and sprockets to move packages, products, and materials efficiently. The sprockets engage with conveyor chains to create a continuous loop for material transport.
6. Mining and Construction:
In heavy industries like mining and construction, large machinery such as excavators, bulldozers, and cranes utilize wheels and sprockets for propulsion and movement. Tracks with sprockets are commonly used in these applications for enhanced traction and stability.
7. Factory Automation:
In automated manufacturing processes, wheels and sprockets are employed in robotic arms and assembly line systems to control movement and manipulate objects with precision.
8. Renewable Energy:
In wind turbines, wheels and sprockets are used to convert the rotational motion of the blades into electrical energy by driving the generator.
These are just a few examples of the diverse applications of wheels and sprockets in machinery and mechanical systems. Their versatility, efficiency, and ability to provide mechanical advantage make them essential components in various industries.
editor by CX 2023-09-05