China Custom SS316 Ss314 Stainless Steel Hollow Pin Chain for Conveyor Parts

Product Description

SS316 SS314 Stainless Steel Hollow Pin Chain For Conveyor Parts
Our Stainless Steel Hollow Pin Chain are very competitive.
If you need plastic conveyor chain, stainless steel mesh belt, we can asseble mesh belt together with stainless steel chain for you. If you don’t know which material is better, we can inform you if you tell us where it is used. Our engineer are powerful and can help you to solve all problems you meet. Most famous chain factories in Europe. Japan are placing big order of stainless steel chain from us. You know, our chain are of high quality and competitive price.

Stainless Steel Hollow Pin Chains and Attachments
– Short Pitch Stainless Steel Hollow Pin Chains: 08BHPSS – 12BHPSS, 40HPSS – 80HPSS
– Double Pitch Stainless Steel Hollow Pin Chains: C2040HPSS – C2082HPSS
– Large Pitch Stainless Steel Hollow Pin Chains: MC, EC, ZC, FVH Series
– Large Pitch Stainless Steel CZPT Pin Conveyor Chain: ISO, BS, DIN or JIS
– ANSI Stainless Steel Side Bow Chains: 08BSBSS – 12BSBSS; 35SBSS – 80SBSS
– ANSI Adapted Stainless Steel Chains: 40SS Sticker, 40SS Tent
– ANSI Engineering Plastic Chains: 40PC – 60PC
– ANSI Poly Stainless Steel Chains: 25PS – 60PS

Material Stainless steel, alloy steel
Process Assembled
Heat treatment Case hardening, Meshbeltfurnace quenching heat treatment
Surface treatment Blacking, galvanization, chroming, electrophoresis, color painting, or customer requirement
Performance High precision, high wear resistance, low noise, smooth and steady, high strength
Model number Standard or nonstandard (single duplex and triple)                                 35-1, 40-1, 50-1, 60-1, 80-1, 100-1, 120-1, 140-1,160-1,200-1,240-1
35-2, 40-2, 50-2, 60-2, 80-2, 100-2, 120-2, 140-2, 160-2, 200-2, 240-2
06B-1,08B-1,10B-1,12B-1,16B-1,20B-1,24B-1,28B-1,32B-1,40B-1,48B-1,56B-1,64B-1,72B-1 
06b-2,08B-2,10B-2,12B-2,16B-2,20B-2,24B-2,28B-2,32B-2,40B-2,48B-2,56B-2,64B-2,72B-2
Packaging Inner plastic bag and outer carton box or customer requirement.

Usage: Transportation Chain
Material: Stainless steel
Surface Treatment: No
Feature: Fire Resistant
Chain Size: 1/2"*3/32"
Structure: Roller Chain
Samples:
US$ 60/Piece
1 Piece(Min.Order)

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Customization:
Available

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conveyor

How do you calculate the maximum allowable tension in a conveyor chain?

The maximum allowable tension in a conveyor chain can be calculated using the following steps:

1. Determine the Chain Pitch:

– Measure the distance between the centers of two consecutive chain pins. This measurement is known as the chain pitch and is typically expressed in inches or millimeters.

2. Determine the Chain Speed:

– Determine the speed at which the conveyor chain will be operating. The chain speed is typically expressed in feet per minute or meters per second.

3. Calculate the Chain Pull:

– Determine the total weight or force that needs to be moved by the conveyor chain. This includes the weight of the conveyed material and any additional loads or forces acting on the chain.

4. Calculate the Required Tension:

– Use the following formula to calculate the required tension:

Tension = (Chain Pull × Chain Speed) / (Chain Pitch × Efficiency)

– The efficiency factor accounts for losses due to friction and other factors and is typically expressed as a decimal between 0 and 1.

5. Determine the Maximum Allowable Tension:

– The maximum allowable tension is determined by the manufacturer’s specifications for the conveyor chain. It is important to consult the manufacturer’s documentation or contact them directly to obtain the maximum allowable tension value.

6. Compare the Required Tension and Maximum Allowable Tension:

– Compare the calculated required tension with the maximum allowable tension. The required tension should be less than or equal to the maximum allowable tension to ensure safe and reliable operation of the conveyor chain.

By following these steps and considering the manufacturer’s specifications, you can accurately calculate the maximum allowable tension in a conveyor chain and ensure that it is within the safe operating limits.

conveyor

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.

conveyor

What are the main components of a conveyor chain?

The main components of a conveyor chain include:

  • Chain Links: Chain links are the individual components that make up the conveyor chain. They are typically made of metal and are connected to form a continuous loop. The design and configuration of the chain links can vary depending on the specific application and load requirements.
  • Pins: Pins are the cylindrical components that hold the chain links together. They are inserted through the end of each chain link to create a solid connection. Pins are usually made of hardened steel to withstand the forces and friction within the conveyor system.
  • Sprockets: Sprockets are toothed wheels that engage with the chain links and provide the driving force to move the conveyor chain. They are typically made of durable materials such as steel or plastic and are designed to match the pitch and profile of the conveyor chain. Sprockets come in various sizes and configurations depending on the desired speed and load capacity of the conveyor system.
  • Guide Rails: Guide rails are stationary components installed along the conveyor path to guide and support the movement of the conveyor chain. They help maintain proper alignment and prevent the chain from derailing or deviating from its intended path.
  • Tensioners: Tensioners are devices used to maintain the proper tension in the conveyor chain. They ensure that the chain remains taut and engaged with the sprockets, preventing slack or excessive sagging. Tensioners can be adjusted to accommodate variations in chain length and to compensate for wear over time.
  • Attachments and Accessories: Depending on the specific application, conveyor chains may include various attachments and accessories. These can include cleats, flights, buckets, or other devices that aid in the movement and handling of specific types of materials. These attachments are typically secured to the chain links at specific intervals or locations.

The combination of these components creates a robust and reliable conveyor chain system capable of efficiently transporting materials in a wide range of industrial applications.

China Custom SS316 Ss314 Stainless Steel Hollow Pin Chain for Conveyor Parts  China Custom SS316 Ss314 Stainless Steel Hollow Pin Chain for Conveyor Parts
editor by CX 2023-07-27

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