Product Description

WH82  Welded Steel Chain  ( For Steel Factory)

We own the sophisticated equipment and the advanced technology, such as: 
1. CAD Designer
2. Wire Cutting Machine
3. Chain Running In Machine
4. Conveyor Furance
5. Ball Drift
6. Shot Peened Parts
7. Design Of Link Plate Waist

We have different models of welding chains, such as:

 

 

Chain No

 

Pitch

(mm)

Outside Barrel Dia

(mm)

Pin Dia

(mm)

Side Bar Height

(mm)

Approx Tooth Face at pitch line    

(mm)

Length of Bearing

(mm)

Plate Thickness

(mm)

Ultimate tensile strength

(KN)

Weight Approx                              

(Kg/FT)

WH82 78.1 26.97 14.35 31.8 38.1 57.4 6.4 132 2.28
 
 

We own the sophisticated equipment and the advanced technology, such as: 
1. CAD Designer
2. Wire Cutting Machine
3. Chain Running In Machine
4. Conveyor Furance
5. Ball Drift
6. Shot Peened Parts
7. Design Of Link Plate Waist

Company Detail:

GOODUCK(TAI) is 1 of a professional exporter with exporting POWER TRANSMISSION PARTS: Roller chains,Conveyor chains,Stainless steel Chains, agricultural chains, steel detachable chains, special chains, sprockets, s. S. Sprockets, HRC couplings, pulleys, bushes etc. All these products have been supplied regularly to World Wide for over 15 years. 

Welcome contact for more details.

Sofia Chen(Sales Manager)
HangZhou GOODLUCK TRANSMISSION TECHNOLOGY CO.,LTD
 

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Material: Steel
Structure: Welded Chain
Surface Treatment: Polishing
Customization:
Available

|

Customized Request

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

conveyor

Can a conveyor chain be used in high-speed applications?

Yes, a conveyor chain can be used in high-speed applications depending on the design and specifications of the chain and the conveyor system. However, there are certain factors to consider when using a conveyor chain in high-speed applications:

1. Chain Design: The design of the conveyor chain should be capable of handling high speeds without compromising safety or performance. Specialized high-speed chains are available that are specifically engineered to withstand the demands of high-speed applications.

2. Material Selection: The material used in the construction of the conveyor chain should have high strength and durability to withstand the forces and stresses at high speeds. Common materials for high-speed conveyor chains include alloy steels, stainless steel, and special polymers.

3. Lubrication: Proper lubrication is crucial in high-speed applications to reduce friction, heat, and wear. Lubricants specifically designed for high-speed conveyor chains should be used to ensure smooth operation and extend the chain’s lifespan.

4. Tensioning and Alignment: Accurate tensioning and alignment of the conveyor chain are critical for high-speed applications. Proper tensioning helps to maintain the chain’s stability and prevent excessive vibrations or elongation, which can lead to chain failure or premature wear.

5. Safety Considerations: High-speed applications require additional safety measures to protect personnel and equipment. Proper guarding, emergency stop systems, and regular maintenance inspections are essential to ensure safe operation.

It’s important to consult the conveyor chain manufacturer or an engineering professional to determine the suitability of a specific chain for high-speed applications. They can provide guidance on selecting the appropriate chain design, material, lubrication, and maintenance practices to ensure reliable and efficient operation at high speeds.

conveyor

Can a conveyor chain be used for heavy-duty applications?

Yes, a conveyor chain can be used for heavy-duty applications. Conveyor chains are specifically designed to handle heavy loads and provide reliable transportation in industrial environments.

Here are some factors that make conveyor chains suitable for heavy-duty applications:

1. Robust construction: Conveyor chains are typically made from high-strength materials such as alloy steel, stainless steel, or hardened carbon steel. These materials offer excellent durability and can withstand the heavy loads and harsh operating conditions commonly found in heavy-duty applications.

2. High load-carrying capacity: Conveyor chains are designed to handle significant loads, including heavy products, bulk materials, or large components. The chains are engineered with appropriate pitch, link dimensions, and strength to ensure reliable transport of heavy items.

3. Fatigue resistance: Conveyor chains are built to withstand repetitive stress and fatigue caused by continuous operation under heavy loads. They undergo specific heat treatments and surface hardening processes to enhance their resistance to wear, fatigue, and deformation.

4. Customization options: Conveyor chains can be customized to meet the specific requirements of heavy-duty applications. This includes selecting the appropriate chain type, pitch, attachment design, and surface coating for improved performance and longevity.

5. Compatibility with heavy-duty equipment: Conveyor chains are designed to integrate seamlessly with heavy-duty conveyor systems, including large motors, drives, and supporting structures. This ensures proper power transmission and smooth operation even in demanding environments.

6. Safety features: Conveyor chains for heavy-duty applications often incorporate safety features such as overload protection, emergency stops, and monitoring systems to ensure the safety of operators and prevent damage to the equipment.

It’s important to consult with a qualified engineer or conveyor manufacturer to select the appropriate conveyor chain and system components for the specific heavy-duty application. They can provide guidance on chain selection, system design, and maintenance practices to ensure optimal performance and reliability.

conveyor

How do you calculate the required length of a conveyor chain?

Calculating the required length of a conveyor chain involves considering several factors related to the conveyor system and the specific application. Here’s a step-by-step guide:

  1. Determine the Conveyor Length: Measure the total length of the conveyor path, including any horizontal, inclined, or vertical sections.
  2. Account for Sprocket Centers: Identify the locations of the sprockets or drive units along the conveyor path. Measure the distance between each pair of adjacent sprockets.
  3. Calculate the Number of Links: Divide the total conveyor length by the pitch of the chain to determine the number of links required. The pitch is the distance between the center of two consecutive pins on the chain.
  4. Consider Tension Adjustment: Take into account any tension adjustment requirements based on the specific application. This may include allowances for tensioning devices or tension variations due to load fluctuations.
  5. Include End Connections: Consider the length of the end connections, such as master links or connecting pins, which are used to join the ends of the chain. Include their dimensions in the total chain length calculation.
  6. Add Safety Factors: Incorporate appropriate safety factors to ensure adequate chain length for proper tensioning and to accommodate any potential stretching or wear over time.

It’s important to note that the calculation of the required chain length is an estimation based on various factors and may require adjustments during the installation and tensioning process. Consulting the conveyor manufacturer’s guidelines or working with an experienced engineer can provide more precise calculations based on the specific conveyor system and application requirements.

China high quality Industrial Mill Steel Welded Lumber Cast Iron Conveyor Chain Attachment Roller Chain Drag Chains Customized  China high quality Industrial Mill Steel Welded Lumber Cast Iron Conveyor Chain Attachment Roller Chain Drag Chains Customized
editor by CX 2024-03-29