Product Description

Drived Chain
1. Used in industry production line
2. Type: X348 X458 XH 468H F100*16 F100*17 F100*24
3. Material: 45Mn2 40Cr 45# 42CrMo.

Specifications
I-beam monorail systems components.
RIVET LESS CHAIN, POWER & FREE TROLLEY, BEARING, “H” ATTACHMENTS

Available products:
1) Rivetless chain X228, X348, X458, 468, X678, 698, F100x16, F100x17, F160x24 drop forged
2) Relevant trolleys ,carriers and spare parts
3) Relevant wheels
4) Samples or customer drawings are welcome

Drop forged detachable chains X348,X458,X678,X698,F100,F160,P80,P100,P200
CattPPilar Chains for X348,X458,X678,X698
 

Chain link feature and advantages
1. Friction press machine produced by forged process.                                                                                                         
    2. Continuous mesh belt CHINAMFG heat treatment.
3. High quality alloy steel material.(40Cr,20CrMnTi)
4. High temperature resistance.
5. High tensile strength.
Chain link application
The chain link is used for chain conveyor, scraper conveyor and  conveyor system and so on.
The user can select the appropriate type, material and specifications of chain link according to the different transport material and  environment.

The overhead conveyor components including drop forged rivetless chain, drop forged overhead trolley, dog drive chain, trolley attachment, side link pusher dog, rollers turn roller, enclosed track chain, free carrier trolley and so on. 
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Material: Alloy
Structure: Combined Chain
Surface Treatment: Polishing
Chain Size: 1/2"*3/32"
Feature: Heat Resistant
Usage: Driving
Samples:
US$ 1/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

drive chain

Can a drive chain be used in a printing press or bindery application?

Yes, a drive chain can be used in a printing press or bindery application where precise and reliable power transmission is required. Here is a detailed explanation:

Printing presses and bindery equipment involve complex machinery that requires the efficient transfer of power to perform various functions such as paper feeding, cutting, folding, and binding. Drive chains offer several advantages in these applications:

  • Precision and Synchronization: Drive chains provide accurate and synchronized power transmission, allowing precise control over the movement of the printing press or bindery equipment. The interlocking design of the chain and sprockets ensures consistent and reliable performance, enabling precise registration of paper and precise execution of operations.
  • High Load Capacity: Printing presses and bindery equipment often handle large volumes of paper or materials, requiring a drive system capable of handling high loads. Drive chains are designed to withstand high load capacities, ensuring reliable power transmission and the ability to handle the demanding requirements of these applications.
  • Smooth and Quiet Operation: Drive chains, when properly lubricated and maintained, provide smooth and quiet operation. This is crucial in printing and bindery applications where noise reduction is desired to create a comfortable working environment and minimize disturbances during operation.
  • Reliability and Durability: Drive chains are known for their durability and reliability. They are designed to withstand continuous operation and the demands of high-speed printing and bindery processes. With proper maintenance, including lubrication and periodic inspection, drive chains can provide long service life, reducing downtime and maintenance costs.
  • Compatibility with Variable Speeds: Printing presses and bindery equipment often require variable speeds to accommodate different printing or bindery processes. Drive chains can be easily integrated with variable speed drives, allowing precise control over the equipment’s speed and accommodating the specific requirements of each printing or bindery task.
  • Compact Design: Drive chains offer a compact and space-efficient solution for power transmission in printing presses and bindery equipment. The chain’s flexible design allows it to navigate around tight spaces and complex machine layouts, enabling efficient utilization of available space.
  • Customizability: Drive chains can be customized to meet the specific requirements of printing press and bindery applications. They can be designed with different pitches, widths, and attachments to suit the unique needs of each machine and its respective processes.

When selecting a drive chain for a printing press or bindery application, factors such as speed, load capacity, space limitations, and compatibility with the printing or bindery processes should be considered. It is essential to follow the manufacturer’s recommendations regarding installation, lubrication, and maintenance to ensure optimal performance and longevity of the drive chain.

By utilizing drive chains in printing presses and bindery equipment, operators can benefit from precise power transmission, high load capacity, smooth operation, reliability, durability, compatibility with variable speeds, compact design, and customization options, contributing to efficient and high-quality printing and bindery processes.

drive chain

How does the efficiency of a drive chain compare to other power transmission systems?

The efficiency of a drive chain can vary depending on factors such as chain type, design, lubrication, and operating conditions. Here is a detailed explanation of how the efficiency of a drive chain compares to other power transmission systems:

  • High Efficiency: Drive chains are known for their high efficiency in power transmission. When properly lubricated and maintained, they can achieve efficiency levels of 95% or higher, which means that a minimal amount of power is lost during transmission.
  • Comparable to Other Systems: The efficiency of a drive chain is generally comparable to other common power transmission systems such as belt drives and gear drives. Each system has its own advantages and considerations, and their efficiencies can be similar when operating under optimal conditions.
  • Factors Affecting Efficiency: The efficiency of a drive chain can be influenced by several factors. These include the type and design of the chain, the condition of the sprockets, the level of lubrication, the alignment of the system, and the tension of the chain. Proper selection, installation, and maintenance play key roles in maximizing the efficiency of a drive chain.
  • Losses in Power Transmission: Despite their high efficiency, drive chains do experience some power losses during operation. These losses occur due to friction within the chain, sliding at the contact points between the chain and the sprockets, and other mechanical factors. However, these losses can be minimized through proper lubrication and tensioning of the chain.

In summary, drive chains offer high efficiency in power transmission, comparable to other common power transmission systems. By selecting the appropriate chain type, ensuring proper lubrication and maintenance, and optimizing the system’s alignment and tension, the efficiency of a drive chain can be maximized, resulting in effective power transmission and minimal power losses.

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editor by CX 2024-04-19