Product Description
High Quality & Made to Order Stainless Steel Table Top Conveyor Chain (TS635)
Product Description
1. Material: Stainless steel chain / Alloy Carbon Steel
2. Surface Treatment: Zinc-Plated / Nickel-Plated / Dacromet-Plated
3. Short pitch stainless steel conveyor chain with attachments.
4. Double pitch stainless steel conveyor chain.
5. Double pitch hollow pin chain.
Note: If you have drawing or samples, we can do the special conveyor chains.
| Product name | Table Top Conveyor Chain (TS635) |
| Materials Available | 1. Stainless Steel: SS304, SS316, etc |
| 2. Alloy Steel: 45Mn, 42CrMo, etc | |
| 3. OEM according to your request | |
| Surface Treatment | Shot peening, Polishing, Oxygenation, Blackening, Zinc-plated, Nickel-plated, Anodized, etc. |
| Characteristic | Fire Resistant, Oil Resistant, Heat Resistant |
| Application | Mainly used in products transmission |
| Design criterion | ISO DIN ANSI & Customer’s Drawing |
| Size | Customer’s Drawing & ISO standard |
| Package | Wooden Case / Container and pallet, or made-to-order |
| Certificate | ISO9001: 2008 |
| Advantage | First quality, Best service, Competitive price, Fast delivery |
| Delivery Time | 20 days for samples. 45 days for official order. |
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Company Profile
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| Material: | Stainless Steel |
|---|---|
| Structure: | Conveyor Chain |
| Surface Treatment: | Oil Blooming |
| Chain Size: | Ts635 |
| Feature: | Heat Resistant |
| Sample: | for Free |
| Samples: | US$ 0/Meter 1 Meter(Min.Order) | |
|---|
| Customization: | Available | Customized Request |
|---|

How do you calculate the required horsepower for a conveyor chain drive?
The calculation of required horsepower for a conveyor chain drive involves considering various factors related to the conveyor system and the specific application. Here is a step-by-step process:
1. Determine the Total Resistance:
– Calculate the total resistance that the conveyor chain needs to overcome during operation. This includes the resistance due to the load being conveyed, frictional losses, elevation changes, and any other resistances in the system.
2. Convert the Resistance to Equivalent Inertia:
– Convert the total resistance to an equivalent inertia by multiplying it by the square of the chain speed.
3. Calculate the Total Inertia:
– Determine the total inertia of the system by considering the inertia of all the rotating components, such as the conveyor chain, sprockets, and any other driven elements.
4. Determine the Required Torque:
– Calculate the required torque by multiplying the total inertia by the desired acceleration or deceleration rate.
5. Convert Torque to Horsepower:
– Convert the required torque to horsepower by dividing it by the motor speed (in RPM) and multiplying by a conversion factor.
6. Consider Safety Factors and Efficiency:
– Apply safety factors to the calculated horsepower to account for variations, contingencies, and future growth.
– Consider the efficiency of the drive system, including the motor, gearbox, and other transmission components, to ensure accurate power transmission.
It’s important to note that the above calculation method provides an estimate of the required horsepower. Consulting with conveyor system manufacturers, engineers, or industry-specific guidelines is recommended for precise calculations and to ensure the selected conveyor chain drive meets the application requirements.

What are the best practices for storing and handling conveyor chains?
Proper storage and handling of conveyor chains are essential to maintain their performance, prevent damage, and prolong their lifespan. Here are some best practices to consider:
1. Clean and dry storage area: Store conveyor chains in a clean and dry environment to prevent the accumulation of dirt, dust, moisture, or contaminants that can affect their performance and cause corrosion.
2. Adequate support: Ensure that the stored conveyor chains are properly supported to prevent excessive bending or deformation. Use pallets, racks, or designated storage containers that can accommodate the weight and length of the chains.
3. Avoid excessive heat or cold: Conveyor chains should be stored in an area with a moderate temperature range to avoid extreme heat or cold that can affect the material properties or lubrication of the chains.
4. Protection against impacts and vibrations: Protect the stored chains from impacts or excessive vibrations that can cause damage or deformation. Use suitable packaging or covers to shield the chains from any potential physical damage.
5. Lubrication: Apply a thin layer of appropriate lubricant to the chains before storage to prevent corrosion and maintain their smooth operation. Follow the manufacturer’s recommendations for lubrication type and quantity.
6. Regular inspections: Periodically inspect the stored conveyor chains to ensure there are no signs of damage, corrosion, or deformation. If any issues are identified, take appropriate actions such as cleaning, lubricating, or replacing the chains.
7. Proper handling techniques: When handling conveyor chains, use appropriate lifting equipment or tools to avoid excessive strain or bending. Avoid dragging or dropping the chains, as this can cause damage to the chain links or attachments.
8. Training and awareness: Provide training to personnel involved in handling and storing conveyor chains to ensure they understand the proper procedures and best practices. Promote awareness of the importance of careful handling and storage to prevent accidents and maintain chain integrity.
By following these best practices, you can ensure the longevity and reliable performance of your conveyor chains, reducing the risk of downtime and costly repairs.

What is a conveyor chain and how does it work?
A conveyor chain is a type of mechanical chain specifically designed for use in conveyor systems. It is composed of a series of interconnected links that form a continuous chain loop. The links are typically made of metal and are joined together through pins or other connecting elements.
Conveyor chains work by transferring power and motion from the driving mechanism, such as a motor or sprocket, to the conveyor system to move materials or products along a predetermined path. The chain is placed on a track or guide rails, and as it moves, it carries the load placed on it.
The operation of a conveyor chain involves the following steps:
- Power transmission:
The driving mechanism transfers rotational power to the conveyor chain, typically through a motor and sprockets. The motor provides the necessary torque to drive the chain.
- Traction and motion:
As the driving mechanism rotates the sprockets, the teeth of the sprockets engage with the links of the conveyor chain. This interaction creates traction, causing the chain to move along the desired path.
- Load carrying:
The load to be transported is placed on the conveyor chain. The load can be in the form of products, materials, or other items. As the chain moves, it carries the load along the conveyor system, allowing for efficient transportation or handling.
- Support and guidance:
The conveyor chain is supported and guided by various components, such as guide rails, rollers, or wear strips. These components ensure the proper alignment and smooth movement of the chain along the conveyor system.
Conveyor chains are commonly used in industries such as manufacturing, logistics, packaging, and material handling. They offer a reliable and efficient method for moving products or materials in a controlled and automated manner.


editor by CX 2024-05-07