Product Description
Product Description
Product Parameters
Standard | GB, ISO, ANSI, DIN |
Type | Standard A and standard B precision roller chain, conveyor chain; |
special chain with accessories, welding chain, leaf chain and sprocket | |
ANSI chain No. | 40,50,60,80,100,120,140,160,180,200,240; |
C40,C50,C60,C80,C100,C120,C140,C160; | |
DIN/ISO chain No. | 08A,10A,12A,16A,20A,24A,28A,32A,36A,40A,48A; |
C08A,C10A,C12A,C16A,C20A,C24A,C28A,C32A; | |
Application | Food processing, pharmaceutical and chemical industries, electronics, machinery; |
household appliances, automotive manufacturing, metallurgy, sewage treatment | |
Series | A series,B series |
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DETAILS ABOUT CHINAMFG CHAIN
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Workshop
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FAQ
1. Are you manufacturer or trade Company?
We are a factory founded in 1997 with trade team for international service.
2. What terms of payment you usually use?
T/T 30% deposit and 70% against document, Western Union, L/C at sight
3. What is your lead time for your goods?
Normally 35 days after confirmed order. 30 days could be available in low season for some items (during May to July), and 45 days during new year and hot season ( Jan to March).
4. Samples
For customers who need sample confirmation before ordering, please bear in mind that the following policy will be adopted:
1) All samples are free of charge with the maximum value not exceeding USD 100.
2) The courier cost for the first-time sample sending will be charged for by the consignee. We will send the samples with freight to be collected. So please inform your account with FedEx, UPS, DHL or TNT so that we can proceed promptly.
3) The first-time courier cost will be totally deducted from the contract value of the trial cooperation. /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Usage: | Transmission Chain, Drag Chain, Conveyor Chain |
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Material: | Stainless steel |
Surface Treatment: | Polishing |
Feature: | Heat Resistant |
Chain Size: | 1/2"*3/32" |
Structure: | Roller Chain |
Samples: |
US$ 0/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
| Customized Request |
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How does the alignment of sprockets affect the performance of a drive chain?
The alignment of sprockets is critical for ensuring the optimal performance and longevity of a drive chain. Here is a detailed explanation:
The alignment of sprockets directly affects the following aspects of a drive chain’s performance:
- Smooth Power Transmission: Proper alignment of sprockets ensures the smooth engagement and disengagement of the chain with the sprocket teeth. When the sprockets are aligned correctly, the chain articulates smoothly, minimizing friction, wear, and noise. This promotes efficient power transmission and prevents premature chain failure.
- Reduced Wear and Elongation: Misaligned sprockets can cause uneven loading on the chain, leading to accelerated wear and elongation. When the sprockets are aligned, the chain experiences equal forces on all links, resulting in more uniform wear distribution and reducing the risk of chain elongation. Proper alignment helps maintain the chain’s pitch and overall length, ensuring consistent power transmission and extending the chain’s service life.
- Minimized Side Loads: Misaligned sprockets can create side loads on the chain, causing it to run at an angle or contact the side plates excessively. This leads to increased friction, wear, and stress on the chain components. Proper alignment reduces these side loads, allowing the chain to run smoothly and minimizing unnecessary wear and stress on the chain’s components.
- Prevention of Chain Skipping or Jumping: Misaligned sprockets can cause the chain to skip or jump teeth, resulting in loss of power transmission, erratic operation, and potential damage to the chain and sprockets. Proper alignment ensures that the chain remains engaged with the sprocket teeth, preventing any skipping or jumping and ensuring reliable power transmission.
- Optimal Tension Distribution: Properly aligned sprockets contribute to the even distribution of chain tension. When the sprockets are aligned, the tension is evenly distributed along the chain, reducing the risk of localized stress points and chain elongation. This helps maintain consistent tension, improves power transmission efficiency, and extends the life of the chain and sprockets.
To achieve proper sprocket alignment, it is important to ensure that the sprockets are mounted securely, aligned parallel to each other, and positioned at the correct distance apart. Additionally, the sprockets should have the appropriate tooth profile and pitch diameter to match the chain’s specifications.
Regular inspection and maintenance are essential to verify and maintain sprocket alignment. This includes checking for signs of wear, damage, or misalignment, as well as periodically adjusting the tension and lubricating the chain as needed.
By ensuring the proper alignment of sprockets, operators can achieve smooth power transmission, reduced wear, minimized side loads, prevention of chain skipping, and optimal tension distribution. This ultimately improves the performance, efficiency, and reliability of the drive chain system.
Can a drive chain be used in a woodworking or sawmill application?
Yes, a drive chain can be used in woodworking and sawmill applications, where reliable power transmission and durability are essential. Here is a detailed explanation:
In woodworking and sawmill operations, machinery and equipment such as saws, planers, jointers, and conveyors are commonly used. Drive chains offer several advantages in these applications:
- High Load Capacity: Drive chains are known for their high load-carrying capacity, making them suitable for heavy-duty applications commonly found in woodworking and sawmill operations. They can handle the significant forces and loads associated with cutting, shaping, and moving timber and lumber.
- Durability and Reliability: Woodworking and sawmill environments can be demanding, with conditions such as sawdust, vibrations, impacts, and variable operating temperatures. Drive chains are designed to withstand these harsh conditions and provide reliable and durable power transmission even in rugged and demanding operating environments.
- Precise Power Transmission: Drive chains offer precise power transmission, ensuring accurate and synchronized movement of the machinery components involved in woodworking and sawmill operations. This allows for consistent and reliable cutting, shaping, and material handling processes.
- Customization Options: Drive chains can be customized to suit specific woodworking and sawmill applications. They are available in various sizes, pitches, and materials to accommodate different loads, speeds, and environmental conditions.
- Compatibility with Auxiliary Components: Drive chains can be easily integrated with auxiliary components commonly used in woodworking and sawmill machinery, such as tensioners, guides, sprockets, and bearings. This allows for efficient and reliable power transmission throughout the entire system.
- Cost-Effectiveness: Drive chains offer a cost-effective solution for power transmission in woodworking and sawmill operations. They have a long service life, reduced maintenance requirements, and lower replacement costs compared to some alternative power transmission systems.
It is important to consider the specific requirements of the woodworking or sawmill application when selecting a drive chain. Factors such as load capacity, speed, environmental conditions, and maintenance considerations should be taken into account.
Regular maintenance, including inspection, lubrication, and tension adjustment, is crucial to ensure optimal performance and longevity of the drive chain in woodworking and sawmill applications.
By utilizing drive chains in woodworking and sawmill operations, operators can benefit from reliable power transmission, durability, and the ability to withstand the challenging conditions encountered in these industries, ultimately contributing to efficient and precise woodworking and lumber processing.
What are the common materials used in drive chains?
Drive chains are manufactured using different materials, chosen based on their specific properties and suitability for the intended application. Here are some common materials used in the production of drive chains:
- Steel: Steel is the most widely used material for drive chains. It offers high strength, durability, and wear resistance. Different grades of steel, such as carbon steel, alloy steel, and stainless steel, are utilized based on the specific requirements of the application.
- Plastic: In certain applications where corrosion resistance, low noise, or weight reduction are priorities, plastic chains are used. Plastic chains are lightweight, resistant to chemicals, and provide smooth operation.
- Nickel-Plated: Nickel-plated chains offer enhanced corrosion resistance compared to standard steel chains. They are commonly used in applications exposed to moisture, humidity, or corrosive environments.
- Coated: Coated chains are regular steel chains with an additional coating applied to the surface for improved protection against corrosion and wear. Common coatings include zinc plating, black oxide coating, or specialized coatings like Teflon®.
- Heat-Treated: Heat-treated chains undergo a specialized heat treatment process to enhance their hardness, strength, and durability. Heat-treated chains are commonly used in heavy-duty applications that require high tensile strength and resistance to wear and fatigue.
- Alloy: Alloy chains are made from steel that is alloyed with other elements like chromium, molybdenum, or nickel. These alloying elements enhance the chain’s strength, toughness, and resistance to corrosion and wear.
The choice of material depends on factors such as the application requirements, operating conditions, load capacity, environmental factors, and budget constraints. It is essential to select a drive chain material that can withstand the specific demands of the application to ensure optimal performance and longevity.
editor by CX 2024-04-12