Product Description
About Factory
With more than 18 years’ histiory, we are a professinal manufacturer for drop forged products such as forged chain (X348 X458 X658 X678 X698 F100 F160), scraper chain (10160, 14218, 14226, 142N), conveyor trolley (X348, X458, X678, XT160), and drive chain (X348, X458, X678), and so forth standard moulds of chain.
Besides, we can also produce as per your drawing or sample, special link chain, pusher, pin and plate, according to customers’ unique requirements.
Product Description
1) Material: Alloy steel, 40Cr, 42CrMo and so on.
2) Types: 10160, 14218, 14226, 2571, 26014, 142N, 150D, S30, and so on. (Or as per your drawing)
3) Process: Moulding→Forging→Polishing & Blasting→Fine machining→Heat treatment→Blasting→Inspecting & testing→Packing
Product Show
Technical Data
| Model | Pitch | Dimension | Lateral Corner | Standard Measured Length (mm) | Measured Quantity | Tensile Strength (KN) | Weight (Kg/m) | |||||
| A | F | G | J | K | S | |||||||
| 80H | 80 | 73 | 42 | 18.4 | 20 | 34.5 | 19.5 | 7 | 3032/3058 | 38 | 250 | 7.8 |
| X348 | 76.6 | 46 | 27 | 12.7 | 12.7 | 20.6 | 13.5 | 9 | 3050.5/3095.2 | 40 | 110 | 3.2 |
| X458 | 102.4 | 57 | 37 | 16 | 16 | 26.5 | 17.5 | 9 | 3063.1/3090.2 | 30 | 210 | 5.2 |
| 468H | 102.4 | 84.1 | 47.8 | 18 | 29.5 | 42.9 | 22.2 | 9 | 3063.1/3090.2 | 30 | 318 | 11.5 |
| X658 | 153.2 | 55.6 | 35 | 16 | 16 | 57.2 | 17.5 | 7 | 3055.1/3082.8 | 20 | 210 | 4 |
| X678 | 153.2 | 77 | 50.8 | 22.2 | 21 | 34.2 | 25 | 7 | 3055.1/3082.8 | 20 | 320 | 9.5 |
| 678 | 153.2 | 77 | 50.8 | 22.2 | 21 | 34.2 | 25 | 7 | 3055.1/3082.8 | 20 | 320 | 9.5 |
| 698 | 153.2 | 95.25 | 64 | 28 | 25.4 | 41.3 | 32 | 5 | 3055.1/3082.8 | 20 | 515 | 17 |
| 998 | 229.4 | 95.25 | 67.5 | 28 | 25.4 | 41.3 | 32 | 5 | 3205/3232.4 | 13 | 515 | 14.8 |
| 9118 | 229.4 | 123.8 | 76.2 | 35 | 33.5 | 52 | 38.1 | 5 | 3205/3232.4 | 13 | 832 | 24.2 |
| S348 | 76.6 | 38.9 | 28.6 | 12.7 | 12.7 | 20.6 | 13.5 | 9 | 3050.5/3095.2 | 40 | 110 | 3.2 |
| S458 | 102.4 | 52.1 | 35 | 16 | 16 | 26.5 | 17.5 | 9 | 3063.1/3090.2 | 30 | 210 | 5.2 |
| S678 | 153.2 | 69.8 | 50.8 | 22.2 | 21 | 34.2 | 25 | 7 | 3055.1/3082.8 | 20 | 320 | 9.5 |
| S698 | 153.2 | 73 | 68.3 | 28 | 25.4 | 41.3 | 32 | 5 | 3055.1/3082.8 | 20 | 515 | 17 |
| S9118 | 229.4 | 98.4 | 77.8 | 35 | 33.5 | 52 | 38.1 | 5 | 3205/3232.4 | 13 | 832 | 24.2 |
| F100 | 100 | 57 | 37 | 16 | 16 | 26.5 | 17.5 | 9 | 2991.3/3018.3 | 30 | 210 | 5.2 |
| F160 | 160 | 78 | 54 | 24 | 20.5 | 36 | 28 | 7 | 3190.7/3219.5 | 20 | 318 | 10.3 |
Products & Testing Equipments
Products Application
Packing & Delivery
Why Choose Us?
1. We are engaged in chain industry over 15 years with rich market experience. We keep improving production techniques. All the products have longer working life and have passed the market test.
2. We can design the correct chains with high quality material, good abrasion resistance, good corrosion, high strengthen and etc as per your request or the chain application.
3. We are the chain manufacturer; you can directly purchase the product from us with low price and high quality.
4. We have a professional team for international trade, they have abundant experiences and are always ready to solve problems for customers. So you have nothing to worry about.
5. We have the long-term cooperative forwarder who can give us the lowest freight. And it can help you to save the freight. What’s more, for the FCL, we will design the packages as per the container sizes with the largest capacity to save the shipping cost for both of us.
| Material: | Alloy |
|---|---|
| Structure: | Combined Chain |
| Surface Treatment: | Polishing |
| Chain Size: | 1/2"*11/128" |
| Feature: | Fire Resistant, Oil Resistant, Heat Resistant |
| Certificate: | SGS and ISO Standard |
| Samples: |
US$ 5/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Can a conveyor chain be used in automotive assembly lines?
Yes, a conveyor chain can be effectively used in automotive assembly lines. Here are the reasons why:
1. Efficient Material Handling:
– Conveyor chains provide a reliable and efficient means of transporting automotive components and parts along the assembly line. They can handle heavy loads and withstand the demanding requirements of automotive manufacturing.
2. Versatility:
– Conveyor chains offer versatility in terms of design and configuration. They can be customized to accommodate various assembly processes, such as body welding, painting, assembly, and final inspection.
3. Precise Positioning:
– Conveyor chains allow precise positioning and synchronization of automotive components, ensuring accurate assembly and alignment during the production process. This helps maintain consistent quality and reduces errors.
4. Automation Integration:
– Conveyor chains can be easily integrated with automation systems in automotive assembly lines. They can work in conjunction with robotic arms, vision systems, and other automated equipment to optimize the production process and improve efficiency.
5. Assembly Line Flexibility:
– Conveyor chains provide flexibility in terms of line configuration and layout. They can be designed to accommodate different assembly line layouts, including straight sections, curves, inclines, and declines, to meet the specific requirements of automotive assembly processes.
6. Space Optimization:
– Conveyor chains help optimize space utilization in automotive assembly plants. They can be designed to navigate around existing equipment and infrastructure, making efficient use of available floor space.
7. Safety:
– Conveyor chains are designed with safety features to protect operators and prevent accidents. Emergency stop controls, guarding, and interlocking mechanisms ensure the safe operation of the assembly line.
8. Increased Production Speed:
– By using conveyor chains, automotive assembly lines can achieve higher production speeds, allowing for faster manufacturing cycles and increased output.
Overall, conveyor chains play a crucial role in enhancing the efficiency, productivity, and safety of automotive assembly lines, contributing to the smooth and streamlined production of vehicles.

How do you calculate the power requirements for a conveyor chain?
Calculating the power requirements for a conveyor chain involves considering various factors. Here’s a step-by-step process:
1. Determine the total weight to be transported: Measure or estimate the total weight of the material or product that will be carried by the conveyor chain. This includes the weight of the product itself, any packaging, and additional loads.
2. Determine the speed of the conveyor: Determine the desired speed at which the conveyor chain will operate. This is typically measured in feet per minute (FPM) or meters per second (m/s).
3. Calculate the required capacity: Multiply the total weight by the desired speed to determine the required capacity of the conveyor system. This will give you the weight per unit of time (e.g., pounds per minute or kilograms per hour).
4. Consider the conveyor’s design factors: Take into account various design factors such as the type and pitch of the conveyor chain, the coefficient of friction between the chain and the conveyor components, and any incline or decline angles of the conveyor system. These factors affect the power requirements.
5. Determine the required power: Use the following formula to calculate the power requirements:
Power (in horsepower) = (Capacity × Friction Factor) ÷ (33,000 × Efficiency)
Where:
– Capacity is the weight per unit of time (from step 3)
– Friction Factor is the ratio of chain tension to chain weight, taking into account the design factors
– 33,000 is a conversion factor to convert the units to horsepower
– Efficiency is the overall efficiency of the conveyor system, typically expressed as a decimal value (e.g., 0.95 for 95% efficiency)
6. Select a suitable motor: Based on the calculated power requirements, select a motor that can provide the necessary power to drive the conveyor chain. Consider factors such as motor type, motor efficiency, and overload capacity.
It’s important to note that the power requirements may vary depending on specific conveyor system designs and operating conditions. Consulting with a qualified engineer or conveyor manufacturer is recommended to ensure accurate calculations and proper motor selection.

What are the environmental considerations when using a conveyor chain?
When using a conveyor chain, there are several environmental considerations to take into account:
1. Temperature and Humidity: Conveyor chains may be exposed to different temperature and humidity levels depending on the application and operating environment. Extreme temperatures or high humidity can affect the performance and lifespan of the chain. It is important to select a chain material and lubrication that can withstand the specific environmental conditions.
2. Contamination and Cleanliness: The presence of dust, dirt, debris, or other contaminants can impact the operation and efficiency of the conveyor chain. Regular cleaning and maintenance should be performed to prevent build-up and ensure smooth chain movement.
3. Chemical Exposure: Conveyor chains used in industries such as chemical processing or food production may come into contact with corrosive chemicals or cleaning agents. It is crucial to choose a chain material that is resistant to chemical corrosion and select appropriate lubricants compatible with the chemicals present in the environment.
4. Noise and Vibration: Conveyor systems can generate noise and vibration during operation, which may have environmental implications. Noise reduction measures, such as using noise-dampening materials or implementing vibration isolation techniques, can help minimize the impact on the surrounding environment and comply with noise regulations.
5. Energy Efficiency: Consideration should be given to energy consumption and efficiency when using a conveyor chain. Optimize the system design, minimize friction losses, and utilize energy-efficient components to reduce the environmental impact and operational costs.
6. Sustainability: Increasingly, sustainability is an important consideration in industrial operations. Choosing conveyor chains made from recyclable or renewable materials, implementing energy-saving measures, and practicing responsible waste management can contribute to a more environmentally friendly operation.
By taking these environmental considerations into account, industries can ensure the proper functioning of conveyor chains while minimizing environmental impact and complying with relevant regulations.


editor by CX 2023-07-21
