Product Description
Product Description
| Type of conveyor | Roller Conveyor, Belt Conveyor, Chain Conveyor |
| Advantage | Efficiency, Accuracy, Reliability, Economy, Flexibility |
| Application | Manufacturing, Retail, Warehousing, Logistics, Pharmaceutic, Food&Beverage etc. |
| Chain size | 44/51/63/83/103/140/150/175/295mm |
| Packaging | Foam, bubble wrap, carton, wooden box, pallet or customized packaging according to customer requirements |
| Payment Terms | 3/7, 5/5, 100% prepaid or based on negociation. |
| Drawing Format | JPEG,PDF,DWG,DXF,IGS,STEP,CAD |
| Certification | ISO9001, ISO14001, ISO45001 |
Introduction of Types:
1. Belt conveyor line
Belt conveying line is the most common kind of logistics conveying line, which is mainly composed of belt, driving device, support and accessories. Belt conveying line has the advantages of simple structure, stable operation, easy maintenance and low energy consumption, so it is widely used in various logistics places.
2. Roller conveyor line
Roller conveyor line is mainly composed of roller, driving device, support and accessories. Roller conveyor line has the advantages of strong carrying capacity, large conveying capacity, stable operation, etc., so it is suitable for conveying large items.
3. Chain conveyor line
Chain conveyor line is mainly composed of chain, sprocket, driving device, bracket and accessories. Chain conveying line has the advantages of strong conveying capacity, stable operation and strong bearing capacity, so it is suitable for conveying large items.
Explanation of Advantages:
1. Efficiency: The logistics conveying line can quickly convey and sort the goods according to the predetermined route, thus improving the logistics efficiency.
2. Accuracy: The high degree of automation of the logistics conveying line can accurately complete the task of sorting and conveying the goods, and reduce human error.
3. Reliability: The mechanical parts of the logistics conveying line are specially designed and manufactured to ensure long service life and stability.
4. Economy: The construction and maintenance cost of logistics conveying line is relatively low, which can save cost for enterprises.
5. Flexibility: the logistics conveying line can be adapted to different kinds and sizes of goods, and can be adjusted and optimized according to the actual needs.
Application of Fields:
1.In the manufacturing industry, conveyor lines are used to transport raw materials, semi-finished products and finished products from 1 place to another, realizing the automation and high efficiency of the production process.
2.In the retail industry, conveyor lines are used to transport goods from the warehouse to the shelves to improve the efficiency of replenishment and display.
3.In the warehousing industry, conveyor lines are used to automate the entire process of goods entering and leaving the warehouse, improving the efficiency and precision of warehouse management.
4.In the logistics industry, logistics conveyor lines are used to transport goods from 1 transportation link to another, realizing the automation and high efficiency of the whole logistics process.
Detailed Photos
Packaging & Shipping
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| Material: | Plastic |
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| Structure: | Scraper Chain |
| Surface Treatment: | Polishing |
| Customization: |
Available
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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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.

Can a conveyor chain be used in food processing applications?
Yes, a conveyor chain can be used in food processing applications. Conveyor chains play a crucial role in the efficient and hygienic handling of food products throughout the production process. Here are some key points to consider:
1. Food-Grade Materials: Conveyor chains used in food processing applications are typically made from food-grade materials such as stainless steel or plastic. These materials are corrosion-resistant, easy to clean, and comply with food safety regulations.
2. Hygiene Considerations: Food processing environments require high standards of hygiene. Conveyor chains designed for food applications incorporate features such as smooth surfaces, open link designs, and easy disassembly for thorough cleaning. They may also have specialized coatings or treatments to prevent bacterial growth.
3. Sanitary Design: Conveyor chains for food processing applications are designed with minimal crevices or joints to prevent food particles from getting trapped. They may have self-draining capabilities to remove excess fluids or debris.
4. Product Integrity: Conveyor chains in food processing applications ensure gentle handling of delicate food products to avoid damage or contamination. They can be equipped with accessories like cleats, side guards, or modular belt systems to securely hold and transport items of various shapes and sizes.
5. High Temperature and Washdown Capabilities: Some food processing applications require conveyor chains to withstand high temperatures during cooking, baking, or sterilization processes. Specialized chains with heat-resistant materials or coatings are available. Additionally, conveyor chains used in food processing should be capable of withstanding frequent washdowns and cleaning with water or cleaning agents.
6. Compliance with Standards: Conveyor chains used in food processing applications must comply with industry-specific standards such as FDA (Food and Drug Administration) regulations, HACCP (Hazard Analysis Critical Control Point) guidelines, and other food safety certifications.
When selecting a conveyor chain for food processing applications, it is important to consider the specific requirements of the production line, including the type of food being handled, the operating conditions, and the necessary sanitary standards. Proper maintenance and regular cleaning protocols should also be implemented to ensure food safety and product integrity.

How can you prevent conveyor chain failures?
Preventing conveyor chain failures is crucial for maintaining the efficiency and reliability of a conveyor system. Here are some key preventive measures:
- Regular Inspection and Maintenance: Implement a routine inspection and maintenance schedule to identify potential issues before they escalate. Regularly inspect the chain for signs of wear, such as elongation, link plate wear, and sprocket tooth wear. Address any visible damage or abnormalities promptly.
- Proper Lubrication: Apply the appropriate lubricant to the conveyor chain to minimize friction and reduce wear. Lubrication helps to prevent metal-to-metal contact, corrosion, and excessive heat generation. Follow the manufacturer’s recommendations for lubrication frequency and use lubricants suitable for the operating conditions.
- Tensioning: Maintain proper tension in the conveyor chain to ensure optimal performance and reduce the risk of failures. Both over-tensioning and under-tensioning can lead to premature wear or chain damage. Follow the manufacturer’s guidelines for tensioning and regularly check and adjust the tension as needed.
- Sprocket Maintenance: Inspect and maintain the sprockets that engage with the conveyor chain. Check for any signs of wear or damage on the sprocket teeth and replace them if necessary. Ensure proper alignment between the chain and sprockets to prevent excessive wear and chain skipping.
- Environmental Considerations: Take into account the environmental factors that can affect the conveyor chain’s performance. Protect the chain from exposure to moisture, corrosive substances, excessive heat, or abrasive materials. Implement appropriate safeguards, such as covers or enclosures, to minimize environmental impact on the chain.
- Proper Loading: Ensure that the conveyor chain is not subjected to excessive loads beyond its capacity. Overloading can lead to accelerated wear and chain failures. Adhere to the recommended load limits and guidelines provided by the chain manufacturer.
- Operator Training: Provide proper training to operators and maintenance personnel on the correct operation, maintenance, and safety procedures related to the conveyor chain system. Educate them on identifying potential issues, performing routine inspections, and reporting any abnormalities.
By implementing these preventive measures, you can significantly reduce the risk of conveyor chain failures and extend the lifespan of the chain. Regular monitoring and maintenance are essential to ensure the system operates smoothly and safely.


editor by CX 2024-05-07
China supplier Coal Scraper Chain Conveyor Underground Mining Tunnel Stainless Steel Drag Chain
Product Description
Product Description
SGB Scraper Chain Conveyor Machine is more suitable for hard coal, large blocks or more inner dirt band conveyor coal. The scraper conveyor is designed to mainly for horizontal transportation in the underground mining .
Specification
| Model | SGB420/22 | SGB420/30 | SGB420/40X | SGB620/40 | SGB620/55) | SGB620/80 | |
| Delivery Capacity (t/h) | 60 | 80 | 100 | 150 | 150 | 150 | |
| Standard length(m) | 80 | 100 | 100 | 100 | 100 | 160 | |
| Chain speed(m/s) | 0.88 | 0.88 | 0.86 | 0.86 | 0.86 | 0.86 | |
| Electric motors | Model number | JDSB-22 | JDSB30 | JDSB40 | DSB40 | DSB55 | DSB40 |
| Power(kW) | 22 | 30 | 40 | 40 | 55 | 2*40 | |
| Voltage(V) | 220/380 | 380/660 | 380/660 | 380/660 | 380/660 | 380/660 | |
| Scraper chain | Form | Side double-stranded | Side double-stranded | Side double-stranded | Side double-stranded | Side double-stranded | Side double-stranded |
| Chain size(mm) | 14*50 | 14×50 | 18×64 | 18×64 | 18×64 | 18×64 | |
| Breaking load(KN) | ≥250 | ≥250 | 320 | ≥320 | ≥320 | ≥320 | |
| Middle Flute size (L x W x H) | 1200×420×150 | 1200×420×150 | 1200×420×180 | 1500×620×180 | 1500×620×180 | 1500×620×180 | |
| Total weight(t) | 8.5 | 10.6 | 16 | 17.8 | 17.9 | 28.6 | |
Our Advantages
Reasonable structure
The fuselage is short, easy to install, and the length of the fuselage is easy to adjust.
Easy to use
Not only can it be transported horizontally,Can also be transported obliquely or vertically.
It can be used alone or combined with multiple units.
Running smoothly
The overall life is high, the operation is stable, the energy consumption is small, and the material damage rate is low.
Large volume
Transport capacity is not affected by lumpiness and humidity.
No jamming phenomenon.
Main Accessories
Company Profile
/* 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(/(.*?):(.*)$/))&&1
| After-sales Service: | 1 Year |
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| Warranty: | 1 Year |
| Structure: | Conveyor System |
| Samples: |
US$ 9999/Piece
1 Piece(Min.Order) | Order Sample Black color
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| Customization: |
Available
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How does a conveyor chain impact energy efficiency in a system?
A conveyor chain plays a significant role in the energy efficiency of a conveyor system. Here are the ways in which it impacts energy efficiency:
1. Reduced Power Consumption:
– A well-designed conveyor chain with low friction characteristics can minimize power consumption. By reducing the frictional resistance between the chain and the conveyor components, less energy is required to move the chain and transport the materials along the conveyor system.
2. Efficient Power Transmission:
– The design and construction of a conveyor chain contribute to efficient power transmission. Chains with optimized pitch, roller diameter, and sprocket tooth profile ensure smooth and effective power transfer, minimizing energy losses during operation.
3. Proper Chain Tensioning:
– Maintaining proper chain tension is crucial for energy efficiency. An adequately tensioned chain ensures optimal contact between the chain and the sprockets, minimizing slippage and power loss. Regular inspections and adjustments of chain tension help maximize energy efficiency.
4. Alignment and Tracking:
– Proper alignment and tracking of the conveyor chain are essential for energy efficiency. Misaligned or poorly tracked chains can cause increased friction, leading to higher energy consumption. Regular monitoring and adjustment of the chain’s alignment ensure smooth and efficient operation.
5. Regular Maintenance:
– Performing routine maintenance on the conveyor chain, including lubrication, cleaning, and inspection, helps maintain optimal performance and energy efficiency. Adequate lubrication reduces friction and wear, minimizing power losses and extending the chain’s lifespan.
6. System Design Optimization:
– Considering energy efficiency during the design phase of a conveyor system can significantly impact its overall efficiency. Proper selection of conveyor chain components, such as low-friction materials and efficient drive systems, can help minimize energy consumption and improve the system’s energy efficiency.
By employing these practices and utilizing energy-efficient conveyor chain technologies, businesses can reduce energy costs, minimize environmental impact, and enhance the overall sustainability of their operations.

What are the benefits of using a roller conveyor chain?
A roller conveyor chain offers several advantages in material handling and transportation applications. Here are some of the benefits:
1. Efficient transportation: Roller conveyor chains are designed to smoothly and efficiently transport various types of goods and materials. The rollers provide low-friction movement, reducing the effort required to move the load along the conveyor.
2. Versatility: Roller conveyor chains are versatile and can handle a wide range of products, from small and lightweight items to heavy and bulky loads. They are commonly used in industries such as manufacturing, distribution, logistics, and warehouses.
3. Durability: Roller conveyor chains are typically made from robust materials such as steel, which provides excellent durability and longevity. They can withstand heavy loads, repetitive use, and harsh working environments.
4. Flexibility: Roller conveyor chains can be configured in various layouts to accommodate different space requirements and material flow patterns. They can be straight, curved, inclined, or declined to optimize the flow of goods within the facility.
5. Easy accumulation: Roller conveyor chains allow for efficient accumulation of products without causing damage or jamming. The rollers can be designed with specific spacing and configurations to enable controlled accumulation and release of items along the conveyor line.
6. Minimal maintenance: With proper maintenance and lubrication, roller conveyor chains require minimal upkeep. The design of the chain and rollers reduces the accumulation of debris, making them easier to clean and maintain.
7. Smooth and quiet operation: The use of rollers in the conveyor chain ensures smooth and quiet operation, reducing noise levels in the workplace. This creates a more comfortable and productive working environment.
8. Enhanced safety: Roller conveyor chains are designed with safety in mind. They can be equipped with various safety features such as guards, sensors, and emergency stop mechanisms to ensure the well-being of operators and prevent accidents.
By utilizing a roller conveyor chain, businesses can benefit from improved efficiency, increased durability, flexibility in material handling, and enhanced safety in their operations.

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 2024-04-24
China high quality Chain of a Scraper Conveyor
Product Description
chain of a scraper conveyor
Introduction
Horizontal scraper chain conveyor is bulk material conveying equipment, which consists of head section with driving device, middle casing, tail section, tension device, as well as scraper chains. MS buried scraper conveyor is widely used in cement plant, coal, metallurgy, mining, light, construction, chemical, grain, power industries etc.
Advantages and Features
1.Totally enclosed structure, without pollution, environmental friendly.
2.Simple structure, convenient installation and maintenance.
3.Horizontal or slightly inclined transport, angle can be from 0° to 30°.
4.Multiple material feeding point and discharging point according to requirement.
5. Trough width can be 160-500mm to meet different material types and capacity.
6. Kinds of scraper chain, to meet different types of material.
7. Conveying distance is up to 80m with material temperature lower than 120ºC.
8. With screw take-up device, can take-up itself automatically, to avoid chain take off.
9. Reducer motor brand can be can be domestic or imported: Tailong,SEW,Siemens etc.
10.Can be disassemble into several sections, save space during transportation.
Technical Parameter:
| Scraper Conveyor Technical Performance | ||||||
| Type | MS16 | MS20 | MS25 | MS32 | MS40 | |
| Trough Width | 160 | 200 | 250 | 320 | 400 | |
| Allowed Material Density Range | 0.2-2.5t/m³ | |||||
| Max.Conveying Distance | 120m | |||||
| Conveying Capacity | speed m/s | 0.16 | 0.16 | 0.16 | 0.16 | 0.16 |
| capacity m³/h | 15 | 23 | 36 | 59 | 83 | |
| speed m/s | 0.2 | 0.2 | 0.2 | 0.2 | 0.2 | |
| capacity m³/h | 18 | 29 | 45 | 74 | 104 | |
| speed m/s | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 | |
| capacity m³/h | 23 | 36 | 56 | 92 | 130 | |
| speed m/s | 0.32 | 0.32 | 0.32 | 0.32 | 0.32 | |
| capacity m³/h | 29 | 46 | 72 | 118 | 166 | |
Selection Conditions
| ♦Material to be processed: _____ | ♦Max. granule size of the feeding material: ____mm |
| ♦Handling capacity (Ps. It means the total | ♦Percentage of Max. granule in material:_________% |
| material capacity feeding from the inlet): _____t/h | ♦Upstream equipment (Ps. It means what kind of |
| ♦Bulk Density: _____t/m3 | equipment is used to feed the material): _____ |
| ♦Conveying distance(distance between | ♦Downstream equipment (Ps. It means what kind of |
| inlet and outlet):__________m | equipment is used to discharge the material): _____ |
| ♦Material size:____mm | ♦Installation form is horizontal or inclined : ________; |
| ♦Material temperature: _______ ºC | If it is inclined,what is the inclined degree________° |
| ♦Water content:____% | ♦Working power supply: _____V ______HZ |
| ♦Material is corrosive or not: ____ (Ps. Yes or No) |
We mainly provide the following equipments :
| Vibrating Screen | Rotary vibrating screen |
| Ultrasonic vibrating screen | |
| Gyratory screen | |
| Trommel screen | |
| Linear vibrating screen | |
| Circular vibrating screen | |
| Dewatering screen | |
| Vibrating feeder | |
| Belt Conveyor | Belt conveyor |
| Sidewall belt conveyor | |
| Portable belt conveyor | |
| Shuttle conveyor | |
| Tripper | |
| Bucket Elevator | Efficient bucket elevator |
| Belt bucket elevator | |
| Ring chain bucket elevator | |
| Plate chain bucket elevator | |
| Cement bucket elevator | |
| Silo bucket elevator | |
| Screw Conveyor | U-type screw conveyor |
| Cement screw conveyor | |
| Pipe screw conveyor | |
| Scraper Conveyor | Horizontal scraper chain conveyor |
| Incline scraper chain conveyor | |
| Grain scraper chain conveyor |
/* 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(/(.*?):(.*)$/))&&1
| Structure: | Chain Conveyor |
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| Material: | Carbon Steel |
| Material Feature: | Oil Resistant, Heat Resistant, Fire Resistant |
| Application: | Chemical Industry, Grain Transport, Mining Transport, Power Plant |
| Condition: | New |
| Motor Brand Can Be Domestic or Imported: | Yutong, ABB, Siemens, Weg etc; |
| Samples: |
US$ 9900/Set
1 Set(Min.Order) | |
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| Customization: |
Available
| Customized Request |
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Can a conveyor chain be used in overhead conveyor systems?
Yes, a conveyor chain can be used in overhead conveyor systems. Overhead conveyor systems are designed to move materials, products, or components along an elevated path, typically in manufacturing or distribution facilities.
Conveyor chains used in overhead conveyor systems are specially designed to handle the weight and load requirements of the application. They are typically made from durable materials such as steel or stainless steel to ensure strength and longevity.
Here are some key considerations when using a conveyor chain in overhead conveyor systems:
1. Load Capacity:
– Ensure that the conveyor chain has sufficient load capacity to handle the weight of the conveyed items. The load capacity should be determined based on the maximum anticipated load and any potential dynamic forces.
2. Chain Type and Design:
– Select a conveyor chain that is suitable for overhead applications, such as an overhead conveyor chain or an inverted tooth chain. These chains are specifically designed to handle the unique requirements of overhead conveyance.
3. Lubrication:
– Proper lubrication is crucial for the smooth operation of the conveyor chain in an overhead system. Consider using lubricants that are suitable for overhead applications and ensure regular lubrication to minimize friction and wear.
4. Safety Measures:
– Implement appropriate safety measures to prevent accidents and ensure worker safety. This may include installing safety guards, emergency stop systems, and implementing regular maintenance and inspection routines.
It is important to consult with conveyor system manufacturers or experts who specialize in overhead conveyor systems to ensure the conveyor chain is selected and installed correctly for the specific application requirements.

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.

How do you troubleshoot common issues with conveyor chains?
Troubleshooting common issues with conveyor chains involves identifying the problem and taking appropriate steps to resolve it. Here are some common issues and troubleshooting approaches:
- Chain Slippage: If the chain is slipping or not engaging properly with the sprockets, check for proper tensioning, alignment, and lubrication. Adjust the tension if necessary and ensure the chain is properly aligned with the sprockets.
- Chain Jamming: If the chain is frequently jamming or getting stuck, inspect the conveyor for any obstructions or foreign objects that may be causing the issue. Clear any debris or blockages and ensure the chain’s path is clear.
- Excessive Noise: If the chain is making loud or unusual noises, check for proper lubrication. Insufficient lubrication can cause increased friction and noise. Apply the appropriate lubricant according to the manufacturer’s recommendations.
- Chain Breakage: If the chain is breaking frequently, inspect for any damaged or worn-out components. Replace any broken or worn links, pins, or attachments. Also, check for proper tensioning and alignment, as excessive tension or misalignment can lead to chain breakage.
- Chain Wear: If the chain shows signs of wear, such as elongation or corrosion, consider replacing it. Excessive wear can affect the performance and lifespan of the chain. Regularly inspect and measure the chain for wear and replace it when necessary.
It’s important to follow proper maintenance practices, including regular inspection, lubrication, and tensioning, to prevent and address common issues with conveyor chains. Consult the manufacturer’s guidelines and seek professional assistance if needed.


editor by CX 2024-04-03
China high quality Drop Forged Scraper Conveyor Chain for Chain Conveyor System
Product Description
Scraper conveyor chain
P152F51/45/45A/45C/47/45D/45E/45F, P2000F29/29A, P101.6F20, RO6205MF3, MR56, MR80, MR224, MR315, FVR40/63/90/112
Forged chain , trolleys,carriers used on overhead conveyor production line.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
The products can be combined to find the best possible solution for even the most demanding applications. Special solutions can also be developed for customers’ individual requirements.
Drop Forged Rivetless Chain, Drop Forged Chains, drop forged link,forged scraper chains.
1.Scraper chains P142,P142V,P142H,P200,P102,P250,P260
2.Detachable chain 51,52,55,57,62,74,78
3.Relevant overhead trolley&carriages&spare parts
4.as per your drawings or samples
| Drop forged detachable chains | X348,X458,X678,X698,F100,F160,P80,P100,P200 |
| CatterPilar Chains for | X348,X458,X678,X698 |
| Usage: | Conveyor System |
|---|---|
| Type: | Conveyor |
| Surface: | Self Colored, Zinc Plated,Blacken |
| Process: | Forging |
| Transport Package: | Plywood Case. |
| Specification: | ISO |
| Customization: |
Available
| Customized Request |
|---|

What are the considerations for selecting a corrosion-resistant conveyor chain?
When selecting a corrosion-resistant conveyor chain, several factors need to be considered to ensure the chain’s longevity and performance in corrosive environments. Here are some key considerations:
1. Material Selection: Choose a chain material that is inherently resistant to corrosion. Stainless steel, such as AISI 304 or AISI 316, is a common choice due to its excellent corrosion resistance properties. Other materials like plastic chains or special alloys can also be considered based on the specific application requirements.
2. Coatings and Surface Treatments: In some cases, additional protective coatings or surface treatments can be applied to enhance the chain’s corrosion resistance. These coatings, such as zinc plating, galvanizing, or epoxy coatings, create a barrier between the chain material and corrosive substances, preventing direct contact and reducing the risk of corrosion.
3. Environmental Compatibility: Consider the specific corrosive agents present in the environment where the conveyor chain will be used. Different corrosive substances, such as acids, alkalis, or saltwater, require specific resistance properties. Ensure that the selected chain material and coatings are compatible with the corrosive agents present in the operating environment.
4. Maintenance and Lubrication: Proper maintenance and lubrication play a crucial role in preventing corrosion and extending the life of a conveyor chain. Regular cleaning, inspection, and application of appropriate lubricants can help remove corrosive contaminants and protect the chain surface from degradation.
5. Testing and Certification: Consider chains that have undergone testing and certification for corrosion resistance in relevant industry standards. Look for certifications such as ISO 9227 (salt spray test) or ASTM B117 (corrosion resistance test) to ensure the chain’s performance in corrosive environments.
By carefully considering these factors and consulting with conveyor chain manufacturers or corrosion-resistant experts, you can select a chain that is well-suited for your specific corrosive environment, minimizing the risk of corrosion-related issues and ensuring optimal performance and longevity.

What are the design considerations for a long-span conveyor chain conveyor?
Designing a long-span conveyor chain conveyor requires careful consideration of various factors to ensure its efficiency, safety, and reliability. Here are some key design considerations:
1. Conveyor Chain Selection: Choose a conveyor chain that is suitable for long spans and can withstand the required load capacity. Consider factors such as chain material, pitch, strength, and durability to ensure it can handle the anticipated load and operating conditions.
2. Conveyor Structure: The conveyor structure should be designed to provide sufficient support and stability for the long span. Consider factors such as material strength, rigidity, and deflection to ensure the structure can handle the weight of the conveyor chain, the product being transported, and any additional loads.
3. Drive System: Select an appropriate drive system that can efficiently power the long-span conveyor chain. Consider factors such as motor power, speed, torque, and control mechanisms to ensure smooth and reliable operation.
4. Tensioning and Alignment: Proper tensioning and alignment of the conveyor chain are critical for its performance and longevity. Design the system with adequate provisions for tensioning devices and alignment mechanisms to maintain optimal chain tension and alignment throughout the conveyor’s length.
5. Supports and Bearings: Install adequate supports and bearings along the length of the conveyor to reduce chain sagging, minimize friction, and ensure smooth movement. Consider factors such as bearing type, lubrication, and maintenance requirements.
6. Conveyor Controls and Safety: Implement appropriate controls and safety features to monitor and control the operation of the long-span conveyor chain. This may include emergency stop systems, speed monitoring, overload protection, and safety interlocks.
7. Environmental Factors: Consider the environmental conditions in which the conveyor will operate, such as temperature, humidity, dust, and corrosive substances. Select materials and components that can withstand these conditions and implement proper ventilation, dust collection, and corrosion protection measures.
8. Maintenance and Accessibility: Design the conveyor system with ease of maintenance and accessibility in mind. Provide sufficient access points, walkways, and platforms for inspection, cleaning, and maintenance tasks. Consider factors such as lubrication points, conveyor cleaning systems, and easy replacement of worn components.
9. Future Expansion and Flexibility: Anticipate future needs for expansion or modifications and design the long-span conveyor chain conveyor with flexibility in mind. This may include allowing for additional conveyor sections, transfer points, or integration with other equipment.
By considering these design considerations, a long-span conveyor chain conveyor can be efficiently designed and optimized for its intended application, ensuring reliable and cost-effective material handling operations.

What lubrication is recommended for conveyor chains?
Choosing the right lubrication for conveyor chains is crucial for maintaining their performance and extending their lifespan. Here are some commonly recommended lubricants:
- Chain Oil: Chain oil is specifically designed for lubricating conveyor chains. It provides excellent lubrication, reduces friction, and helps prevent wear and corrosion. Chain oils come in various viscosities to suit different operating conditions.
- Synthetic Lubricants: Synthetic lubricants, such as synthetic oils and greases, offer enhanced performance and durability. They have excellent temperature stability, high resistance to oxidation and degradation, and superior lubricating properties. Synthetic lubricants are suitable for applications with high temperatures, heavy loads, or extreme operating conditions.
- Food-Grade Lubricants: For conveyor chains used in food processing or other industries with strict hygiene requirements, food-grade lubricants are recommended. These lubricants are formulated to be safe for incidental food contact and comply with relevant regulations and standards.
- Dry Film Lubricants: In certain applications where liquid lubricants are not suitable, such as dusty or dirty environments, dry film lubricants can be used. These lubricants form a protective coating on the chain surfaces, reducing friction and preventing wear.
When selecting a lubricant, consider the operating conditions, such as temperature, speed, load, and environmental factors. Consult the manufacturer’s recommendations and guidelines to ensure you choose the appropriate lubrication product for your specific conveyor chain. Regularly monitor the lubrication levels and reapply as needed to maintain optimal chain performance.


editor by CX 2023-11-07
China Custom Drop Forged Scraper Conveyor Chain for Chain Conveyor System
Product Description
Scraper conveyor chain
P152F51/45/45A/45C/47/45D/45E/45F, P2000F29/29A, P101.6F20, RO6205MF3, MR56, MR80, MR224, MR315, FVR40/63/90/112
Forged chain , trolleys,carriers used on overhead conveyor production line.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
The products can be combined to find the best possible solution for even the most demanding applications. Special solutions can also be developed for customers’ individual requirements.
Drop Forged Rivetless Chain, Drop Forged Chains, drop forged link,forged scraper chains.
1.Scraper chains P142,P142V,P142H,P200,P102,P250,P260
2.Detachable chain 51,52,55,57,62,74,78
3.Relevant overhead trolley&carriages&spare parts
4.as per your drawings or samples
| Drop forged detachable chains | X348,X458,X678,X698,F100,F160,P80,P100,P200 |
| CatterPilar Chains for | X348,X458,X678,X698 |
| Surface: | Self Colored, Zinc Plated,Blacken |
|---|---|
| Process: | Forging |
| Type: | Conveyor |
| Usage: | Conveyor System |
| Transport Package: | Plywood Case. |
| Specification: | ISO |
| Customization: |
Available
| Customized Request |
|---|

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.

What are the benefits of using a roller conveyor chain?
A roller conveyor chain offers several advantages in material handling and transportation applications. Here are some of the benefits:
1. Efficient transportation: Roller conveyor chains are designed to smoothly and efficiently transport various types of goods and materials. The rollers provide low-friction movement, reducing the effort required to move the load along the conveyor.
2. Versatility: Roller conveyor chains are versatile and can handle a wide range of products, from small and lightweight items to heavy and bulky loads. They are commonly used in industries such as manufacturing, distribution, logistics, and warehouses.
3. Durability: Roller conveyor chains are typically made from robust materials such as steel, which provides excellent durability and longevity. They can withstand heavy loads, repetitive use, and harsh working environments.
4. Flexibility: Roller conveyor chains can be configured in various layouts to accommodate different space requirements and material flow patterns. They can be straight, curved, inclined, or declined to optimize the flow of goods within the facility.
5. Easy accumulation: Roller conveyor chains allow for efficient accumulation of products without causing damage or jamming. The rollers can be designed with specific spacing and configurations to enable controlled accumulation and release of items along the conveyor line.
6. Minimal maintenance: With proper maintenance and lubrication, roller conveyor chains require minimal upkeep. The design of the chain and rollers reduces the accumulation of debris, making them easier to clean and maintain.
7. Smooth and quiet operation: The use of rollers in the conveyor chain ensures smooth and quiet operation, reducing noise levels in the workplace. This creates a more comfortable and productive working environment.
8. Enhanced safety: Roller conveyor chains are designed with safety in mind. They can be equipped with various safety features such as guards, sensors, and emergency stop mechanisms to ensure the well-being of operators and prevent accidents.
By utilizing a roller conveyor chain, businesses can benefit from improved efficiency, increased durability, flexibility in material handling, and enhanced safety in their operations.

How can you prevent conveyor chain failures?
Preventing conveyor chain failures is crucial for maintaining the efficiency and reliability of a conveyor system. Here are some key preventive measures:
- Regular Inspection and Maintenance: Implement a routine inspection and maintenance schedule to identify potential issues before they escalate. Regularly inspect the chain for signs of wear, such as elongation, link plate wear, and sprocket tooth wear. Address any visible damage or abnormalities promptly.
- Proper Lubrication: Apply the appropriate lubricant to the conveyor chain to minimize friction and reduce wear. Lubrication helps to prevent metal-to-metal contact, corrosion, and excessive heat generation. Follow the manufacturer’s recommendations for lubrication frequency and use lubricants suitable for the operating conditions.
- Tensioning: Maintain proper tension in the conveyor chain to ensure optimal performance and reduce the risk of failures. Both over-tensioning and under-tensioning can lead to premature wear or chain damage. Follow the manufacturer’s guidelines for tensioning and regularly check and adjust the tension as needed.
- Sprocket Maintenance: Inspect and maintain the sprockets that engage with the conveyor chain. Check for any signs of wear or damage on the sprocket teeth and replace them if necessary. Ensure proper alignment between the chain and sprockets to prevent excessive wear and chain skipping.
- Environmental Considerations: Take into account the environmental factors that can affect the conveyor chain’s performance. Protect the chain from exposure to moisture, corrosive substances, excessive heat, or abrasive materials. Implement appropriate safeguards, such as covers or enclosures, to minimize environmental impact on the chain.
- Proper Loading: Ensure that the conveyor chain is not subjected to excessive loads beyond its capacity. Overloading can lead to accelerated wear and chain failures. Adhere to the recommended load limits and guidelines provided by the chain manufacturer.
- Operator Training: Provide proper training to operators and maintenance personnel on the correct operation, maintenance, and safety procedures related to the conveyor chain system. Educate them on identifying potential issues, performing routine inspections, and reporting any abnormalities.
By implementing these preventive measures, you can significantly reduce the risk of conveyor chain failures and extend the lifespan of the chain. Regular monitoring and maintenance are essential to ensure the system operates smoothly and safely.


editor by CX 2023-10-12
China manufacturer Drop Forged Scraper Conveyor Chain for Chain Conveyor System
Product Description
Scraper conveyor chain
P152F51/45/45A/45C/47/45D/45E/45F, P2000F29/29A, P101.6F20, RO6205MF3, MR56, MR80, MR224, MR315, FVR40/63/90/112
Forged chain , trolleys,carriers used on overhead conveyor production line.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
The products can be combined to find the best possible solution for even the most demanding applications. Special solutions can also be developed for customers’ individual requirements.
Drop Forged Rivetless Chain, Drop Forged Chains, drop forged link,forged scraper chains.
1.Scraper chains P142,P142V,P142H,P200,P102,P250,P260
2.Detachable chain 51,52,55,57,62,74,78
3.Relevant overhead trolley&carriages&spare parts
4.as per your drawings or samples
| Drop forged detachable chains | X348,X458,X678,X698,F100,F160,P80,P100,P200 |
| CatterPilar Chains for | X348,X458,X678,X698 |
| Surface: | Self Colored, Zinc Plated,Blacken |
|---|---|
| Process: | Forging |
| Type: | Conveyor |
| Usage: | Conveyor System |
| Transport Package: | Plywood Case. |
| Specification: | ISO |
| Customization: |
Available
| Customized Request |
|---|

What are the benefits of using an overhead conveyor chain system?
Using an overhead conveyor chain system offers several benefits in various industrial applications. Here are some key advantages:
1. Space Optimization:
– Overhead conveyor chain systems utilize the vertical space, allowing efficient utilization of floor space. This is especially beneficial in facilities with limited floor area, as it enables efficient material handling and production flow without obstructing the work area.
2. Flexibility and Versatility:
– Overhead conveyor chains offer flexibility in routing and can be customized to fit the specific layout requirements of the facility. They can traverse different areas, including assembly lines, paint booths, storage areas, and more. The versatility of overhead systems allows for efficient and adaptable material movement.
3. Improved Safety:
– Overhead conveyor chains minimize ground-level obstructions, reducing the risk of tripping hazards and accidents. Operators and workers can safely navigate the work area without interference from the conveyor system.
4. Product Protection:
– Overhead conveyor chains provide better protection for the products being transported. By keeping the products elevated and away from potential hazards on the floor, such as dust, debris, or spills, the risk of product damage or contamination is reduced.
5. Increased Efficiency:
– Overhead conveyor systems can enhance production efficiency by facilitating continuous material flow and reducing manual handling. They enable automated loading and unloading of materials, leading to faster processing times and improved overall productivity.
6. Easy Maintenance:
– Overhead conveyor chains are typically designed for easy maintenance. Components such as chains, trolleys, and drives can be accessed and serviced conveniently, minimizing downtime and maintenance costs.
7. Customization and Integration:
– Overhead conveyor chains can be tailored to meet specific application requirements, including load capacity, speed, and control systems. They can also be integrated with other automated systems, such as robotic workstations or sorting mechanisms, to further optimize the material handling process.
Overall, using an overhead conveyor chain system provides efficient material handling, maximizes space utilization, enhances safety, and improves productivity in industrial environments.

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 the load capacity of a conveyor chain?
The load capacity of a conveyor chain depends on various factors, including the chain design, material, size, and the operating conditions. It is crucial to consider the specific application requirements when determining the load capacity of a conveyor chain. Here are some key factors to consider:
- Chain Design: Different types of conveyor chains have varying load capacities. The chain design includes factors such as the type of links, their configuration, and the presence of attachments or rollers.
- Material: The material used to manufacture the conveyor chain significantly affects its load capacity. Common materials include steel, stainless steel, and plastic. Steel chains are generally more robust and have higher load-bearing capabilities.
- Chain Size: The size of the conveyor chain, including the pitch and width, plays a role in determining its load capacity. Larger chains with wider links tend to have higher load capacities.
- Operating Conditions: Factors such as the speed of the conveyor, the type and weight of the transported materials, and the environmental conditions (temperature, humidity, etc.) can impact the load capacity of the chain.
- Manufacturer Specifications: It is essential to consult the manufacturer’s specifications and guidelines for the specific conveyor chain being used. Manufacturers typically provide load capacity charts or tables based on their chain designs.
The load capacity of a conveyor chain is typically specified in terms of its maximum allowable working load or breaking strength. These values are determined through rigorous testing and engineering calculations. To ensure safe and efficient operation, it is important to select a conveyor chain that has a load capacity suitable for the intended application. Exceeding the recommended load capacity can lead to premature wear, chain failure, and potential safety hazards.


editor by CX 2023-09-15
China supplier Drop Forged Conveyor Scraper Chain for Chain Conveyor System
Product Description
ForgedScraper conveyor chain
P152F51/45/45A/45C/47/45D/45E/45F, P2000F29/29A, P101.6F20, RO6205MF3, MR56, MR80, MR224, MR315, FVR40/63/90/112
Forged chain , trolleys,carriers used on overhead conveyor production line.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
Main products are Forge chain and trolley, welded link chain, Standard and non-standard stainless steel and carbon steel roller chain, Leaf chain, standard and non-standard conveyor chain, Scraper conveyor chain, Cranked link chain, double plus chain, double pitch transmission chain, plastic chain, sprockets and Other accessories.
The products can be combined to find the best possible solution for even the most demanding applications. Special solutions can also be developed for customers’ individual requirements.
Drop Forged Rivetless Chain, Drop Forged Chains, drop forged link,forged scraper chains.
1.Scraper chains P142,P142V,P142H,P200,P102,P250,P260
2.Detachable chain 51,52,55,57,62,74,78
3.Relevant overhead trolley&carriages&spare parts
4.as per your drawings or samples
| Drop forged detachable chains | X348,X458,X678,X698,F100,F160,P80,P100,P200 |
| CatterPilar Chains for | X348,X458,X678,X698 |
| Material: | Alloy |
|---|---|
| Structure: | Combined Chain |
| Surface Treatment: | Polishing |
| Chain Size: | 1/2"*3/32" |
| Feature: | Heat Resistant |
| Process: | Forging |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | |
|---|

What are the considerations for selecting a corrosion-resistant conveyor chain?
When selecting a corrosion-resistant conveyor chain, several considerations should be taken into account to ensure optimal performance and longevity in corrosive environments. Here are the key factors to consider:
– Material Selection:
Choose a conveyor chain material that is resistant to the specific corrosive agents present in the environment. Stainless steel, plastic, and special coatings such as zinc or nickel plating are commonly used for their corrosion resistance properties.
– Corrosion Resistance Ratings:
Review the corrosion resistance ratings of different chain materials and coatings. Look for industry standards such as ASTM or ISO ratings that indicate the material’s resistance to specific corrosive substances or environmental conditions.
– Environmental Factors:
Consider the specific environmental factors that contribute to corrosion, such as humidity, temperature, presence of chemicals or solvents, and exposure to saltwater or acids. Evaluate how these factors may impact the chain’s corrosion resistance requirements.
– Coating or Surface Treatment:
If using a metal chain, consider applying additional coatings or surface treatments to enhance its corrosion resistance. Options may include electroplating, powder coating, or using specialized anti-corrosion coatings.
– Compatibility with Cleaning Methods:
Ensure that the selected chain material is compatible with the cleaning methods and chemicals used in the application. Some corrosive-resistant materials may require specific cleaning procedures to maintain their performance and longevity.
– Operational Considerations:
Take into account the load capacity, speed, and operational requirements of the conveyor system. Ensure that the corrosion-resistant chain can withstand the mechanical stresses and operational demands without compromising its corrosion resistance properties.
– Cost-Effectiveness:
Weigh the initial cost and long-term benefits of using a corrosion-resistant conveyor chain. While corrosion-resistant materials may have a higher upfront cost, they can significantly reduce maintenance, replacement, and downtime costs associated with corrosion-related failures.
By considering these factors, you can select a corrosion-resistant conveyor chain that is well-suited for the specific corrosive environment, ensuring reliable and durable performance in applications such as chemical processing, food production, wastewater treatment, or outdoor environments.

What are the benefits of using stainless steel conveyor chains?
Stainless steel conveyor chains offer several advantages over other types of chains. Here are some of the key benefits:
1. Corrosion Resistance: Stainless steel is highly resistant to corrosion, making it suitable for applications in harsh environments or industries where frequent washdowns or exposure to moisture is required. It does not rust or corrode like other metals, ensuring a longer lifespan and reliable performance.
2. Strength and Durability: Stainless steel chains are known for their high strength and durability. They can withstand heavy loads, high temperatures, and abrasive materials without deformation or breakage. This makes them ideal for heavy-duty applications where reliability and longevity are crucial.
3. Hygienic and Sanitary: Stainless steel is a non-porous material that is easy to clean and maintain. It is resistant to bacteria, mold, and other contaminants, making it suitable for industries with strict hygiene requirements such as food processing, pharmaceuticals, and medical devices. Stainless steel chains can be thoroughly cleaned and sanitized, reducing the risk of product contamination.
4. Temperature Resistance: Stainless steel chains can withstand a wide range of temperatures, both high and low. They exhibit excellent heat resistance, allowing them to maintain their strength and performance even in extreme temperature conditions.
5. Aesthetic Appeal: Stainless steel chains have a sleek and polished appearance, adding a professional and aesthetic touch to the conveyor system. They are commonly used in industries where visual appeal and brand representation are important, such as retail or luxury goods.
6. Chemical Resistance: Stainless steel is resistant to various chemicals, including acids, alkalis, and solvents. This makes it suitable for applications where contact with corrosive substances is likely.
7. Compatibility with High-Speed Applications: Stainless steel chains can withstand high-speed operations without compromising their structural integrity or performance. They maintain their stability and accuracy even at elevated speeds.
Overall, stainless steel conveyor chains offer corrosion resistance, strength, durability, hygienic properties, temperature resistance, aesthetic appeal, chemical resistance, and compatibility with high-speed applications. These benefits make them a preferred choice in industries such as food and beverage, pharmaceuticals, automotive, and manufacturing, where reliability, cleanliness, and performance are essential.

What are the noise levels associated with conveyor chains?
The noise levels associated with conveyor chains can vary depending on several factors:
1. Chain Type: Different types of conveyor chains produce varying noise levels. For example, roller chains tend to generate more noise compared to silent chains or plastic modular chains.
2. Speed: The speed at which the conveyor chain operates can influence the noise level. Higher speeds generally result in increased noise due to the impact and friction between the chain and other components.
3. Chain Condition: The condition of the conveyor chain plays a role in noise generation. Worn-out or improperly maintained chains can produce more noise due to increased friction and vibration.
4. Surrounding Environment: The noise levels can also be affected by the environment in which the conveyor system operates. Factors such as the presence of other machinery, acoustics of the facility, and noise insulation measures can impact the overall noise level.
5. Design and Components: The design of the conveyor system and the choice of components can influence noise levels. Factors such as the use of noise-reducing materials, proper alignment of components, and vibration dampening measures can help reduce noise.
It is important to note that excessive noise levels in the workplace can have adverse effects on the well-being of employees and may require noise control measures to comply with occupational health and safety regulations. Implementing noise reduction strategies like using noise-dampening materials, incorporating proper lubrication, maintaining chain tension, and applying vibration isolation techniques can help minimize the noise associated with conveyor chains.


editor by CX 2023-09-07
China OEM China Factory Custom Stainless Steel Transmission Scraper Conveyor Chain
Product Description
|
Our Company
ZheJiang CZPT Machinery Manufacture Co., Ltd.
–Branch of CZPT Industry Ltd.
We specialize in Metal Parts Solution for Vehicle, Agriculture machine, Construction Machine, transportation equipment, Valve and Pump system.
With keeping manufacturing process design, quality plHangZhou, key manufacturing processes and final quality control in house.
We are mastering key competence to supply quality mechanical parts and assembly to our customers for both Chinese and Export Market.
To satisfy different mechanical and functional requirements from our customers we are making a big range of metal products for our clients on base of different blanks solutions and technologies.
These blanks solutions and technologies include processes of Iron Casting, Steel Casting, Stainless Steel Casting, Aluminum Casting and Forging.
During the early involvement of the customer’s design process we are giving professional input to our customers in terms of process feasibility, cost reduction and function approach.
You are welcome to contact us for technical enquiry and business cooperation.
Our Team are a big happy family, we not only supplying products to our customers , but also trying to build more values to our customers’ business by introducing suitable solution or technology to our customers with compromising parts’ function, technologies’ advantage, realization feasibility, cost control and quality reliability.
With many years experience in this line,we will be trusted by our advantages in competitive price,one-time delivery,prompt response,on-hand engineering support and good after-sales services.
FAQ:
1. Are you a manufacturer or a trading company?
We are a professional manufacturer with over 15 years’ export experience for designing and producing vehicle machinery parts.
2. How can I get some samples?
If you need, we are glad to offer you samples for free, but the new clients are expected to pay the courier cost,
and the charge will be deducted from the payment for formal order.
3. Can you make casting according to our drawing?
Yes, we can make casting according to your drawing, 2D drawing, or 3D cad model. If the 3D cad model can be supplied,
the development of the tooling can be more efficient. But without 3D, based on 2D drawing we can still make the samples properly approved.
4. Can you make casting based on our samples?
Yes, we can make measurement based on your samples to make drawings for tooling making.
5. What’s your quality control device in house?
We have spectrometer in house to monitor the chemical property, tensile test machine to control the mechanical property and UT Sonic as NDT checking method to control the casting detect under the surface of casting
If you have demand, please send us an inquiry.
|
Shipping Cost:
Estimated freight per unit. |
To be negotiated |
|---|
| Die Casting Machine Type: | Hot Chamber Die Casting Machine |
|---|---|
| Die Casting Method: | Precision Die Casting |
| Application: | Auto Parts |
| Samples: |
US$ 4.59/kg
1 kg(Min.Order) | Order Sample As customer required
|
|---|
| Customization: |
Available
| Customized Request |
|---|

Can a conveyor chain be used in overhead conveyor systems?
Yes, a conveyor chain can be used in overhead conveyor systems. Overhead conveyor systems are designed to move materials, products, or components along an elevated path, typically in manufacturing or distribution facilities.
Conveyor chains used in overhead conveyor systems are specially designed to handle the weight and load requirements of the application. They are typically made from durable materials such as steel or stainless steel to ensure strength and longevity.
Here are some key considerations when using a conveyor chain in overhead conveyor systems:
1. Load Capacity:
– Ensure that the conveyor chain has sufficient load capacity to handle the weight of the conveyed items. The load capacity should be determined based on the maximum anticipated load and any potential dynamic forces.
2. Chain Type and Design:
– Select a conveyor chain that is suitable for overhead applications, such as an overhead conveyor chain or an inverted tooth chain. These chains are specifically designed to handle the unique requirements of overhead conveyance.
3. Lubrication:
– Proper lubrication is crucial for the smooth operation of the conveyor chain in an overhead system. Consider using lubricants that are suitable for overhead applications and ensure regular lubrication to minimize friction and wear.
4. Safety Measures:
– Implement appropriate safety measures to prevent accidents and ensure worker safety. This may include installing safety guards, emergency stop systems, and implementing regular maintenance and inspection routines.
It is important to consult with conveyor system manufacturers or experts who specialize in overhead conveyor systems to ensure the conveyor chain is selected and installed correctly for the specific 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 are the different types of conveyor chains?
There are several types of conveyor chains available, each designed to meet specific application requirements. Here are some common types of conveyor chains:
- Roller chains: Roller chains are the most commonly used type of conveyor chain. They consist of a series of cylindrical rollers connected by side plates. Roller chains provide smooth and efficient movement and are suitable for medium to heavy-duty applications.
- Double pitch chains: Double pitch chains have larger pitch (distance between the centers of adjacent pins) compared to standard roller chains. They are often used in applications that require slower speeds and lighter loads.
- Hollow pin chains: Hollow pin chains have hollow pins that allow for easy attachment of various accessories or attachments. They are commonly used in conveying applications that require customization or where attachments need to be mounted.
- Apron or slat chains: Apron or slat chains consist of plates or slats that are connected by hinges. They are used in heavy-duty applications where the chain needs to support and carry large loads or withstand harsh environments.
- Plastic chains: Plastic chains are made of durable and lightweight materials such as acetal or polyethylene. They offer benefits such as corrosion resistance, low noise levels, and the ability to work in wet or washdown environments. Plastic chains are commonly used in food processing, packaging, and pharmaceutical industries.
These are just a few examples of conveyor chain types, and there are many other variations available depending on specific application requirements. The selection of the appropriate conveyor chain type depends on factors such as load capacity, speed, environment, and desired functionality.


editor by CX 2023-09-05
China best CZPT Scraper Conveyor Chain Drag Conveyor Chain Conveyor Roller Chain
Product Description
ZheJiang CZPT Conveying Equipment Co.,Ltd
Product Description
Bush roller chain(used in horizontal scraper conveyor)
1.Chains adopt high quality medium-carbon alloy steel, chain plate material is 40Mn, pin and roller material is 40Cr. High quality material and good heat treatment guarantee excellent anti-shearing force and tensile strength during working and have good looking.
2.Model: GLF For TGSS flat scraper conveyor, install flat scrapper
General & Dimension(Material: Carbon Steel, Stainless Steel)
| Type |
Pitch P mm |
between inner plates b1 mm |
Bush Diameter d mm |
Pin Diameter d1 mm |
Bush Diameter d2 mm |
Plate Width H mm |
Plate Thickness T mm |
Flight Attachment (mm) | Rated Strength KN |
|||
| Width L |
Distance L1 |
Distance L2 |
diameter D |
|||||||||
| GLF66.5(5-6)D
|
66.5
|
26.5
|
22.23
|
12.7
|
16.23
|
30
|
5/6
|
160 | 102 | / | 2-Φ9X14 | 140
|
| 230 | 95 | 195 | 4-Φ9X14 |
|||||||||
| 270 | 102 | 228 | ||||||||||
| GLF66.675(5-6)D
|
66.675
|
26.5
|
22.23
|
12.7
|
16.23
|
30
|
5/6
|
182 | 90 | 150 | 4-Φ9X14
|
140
|
| 215 | 95 | 195 | ||||||||||
| 295 | 95 | 195 | ||||||||||
| GLF100(6)
|
100
|
38.5
|
36.0
|
16.0
|
21.6
|
40
|
6
|
170 | 115 | 2-Φ9X14 | 180
|
|
| 225 | 95 | 195 | 4-Φ9X14
|
|||||||||
| 294 | 115 | 245 | ||||||||||
| 370 | 155 | 255 | ||||||||||
| GLF125(6)D |
125 |
32.5 |
25.0 |
18.0 |
20.00 |
50 |
6 |
300 | 115 | 245 | 4-Φ9X14 |
200 |
| 370 | 130 | 330 | ||||||||||
| GLF160(8)D×385 | 160 | 36.5 | 36.0 | 17.8 | 24.50 | 50 | 8 | 385 | 130 | 330 | 4-Φ11X15 | 220 |
| GLF200(8)D×467 | 200 | 42.5 | 40.0 | 20.0 | 30.00 | 60 | 8 | 467 | 160 | 420 | 4-Φ13X17 | 250 |
| 81X | 66.27
|
26.99
|
23.02
|
11.1
|
16.23
|
28.6 | 4 | Welding attached plate, length and hole size customized Wood transport chain according to customer requirements
|
107 | |||
| 81XH | 31.4 |
6/8 | 152 | |||||||||
| 81XHH | 8 | 191 | ||||||||||
NOTE: Other specifications which are not listed above can be made to customers’ specifications.
Bush roller chain(used in U type scraper conveyor)
Model: GLR For TGSU arc scraper conveyor, install U type scrapper
General & Dimension(Material: Carbon Steel, Stainless Steel)
| Type | Pitch P mm |
between inner plates b1 mm |
Bush Diameter D mm |
Pin Diameter d1 mm |
Bush Diameter d2 mm |
Plate Width H mm |
Plate Thickness T mm |
Flight Attachment (mm) | Rated Strength KN |
|||
| Width L mm |
Distance L1mm |
Distance L2mm |
diameter D mm |
|||||||||
| GLR68(5) | 68 | 25.3 | 22.23 | 11.1 | 16.23 | 29 | 5 | 102 | 32 | 4-Φ9 | 140 | |
| GLR60(6)D | 60 | 26.0 | 22.23 | 12.7 | 30 | 6 | 130 | 100 | 32 | 4-Φ9 | 140 | |
| GLR66.5(6)D | 66.5 | 26.5 | 22.23 | 12.7 | 16.23 | 30 | 6 | 130 | 102 | 32 | 4-Φ9 | 140 |
| GLR80(6)D | 80 | 32.0 | 28.00 | 18.0 | 42 | 6 | 160 | 120 | 32 | 4-Φ9 | 140 | |
| GLR100(6)D | 100 | 38.5 | 36.00 | 16.0 | 21.6 | 40 | 6 | 130 | 102 | 32 | 4-Φ9 | 180 |
Ring Chain
| DRAG CONVEYOR Type |
Ring Chain Type |
Pitch P(mm) |
Diameter d(mm) |
length L1(mm) |
Width W(mm) |
Flight Type |
Wing Width L(mm) |
Flight Width H(mm) |
| GSS16 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF16 | 148 | 43.5 |
| GSS20 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF20 | 188 | 43.5 |
| GSS25 | D10-55-13 | 55 | 10 | 74 | 32.5 | HF25 | 225 | 43.5 |
| GSS32 | D14-70-18 | 70 | 14 | 95 | 45 | HF32 | 300 | 54.5 |
| GSS40 | D14-70-18 | 70 | 14 | 95 | 45 | HF40 | 382 | 54.5 |
Offset Sidebar Chain
| Type | Pitch P mm |
Bush Diameter d1 |
Pin Diameter d |
Plate Width H |
Width between plates at inner ends b1 |
Width between plates at outer ends b2 |
Plate Thickness T1 |
Rated Strength KN |
Wing Plate Thickness T2 |
Wing Width L mm |
| WH78 | 66.27 | 22.23 | 12.7 | 28.4 | 28.4 | 51 | 6.4 | 93.4 | Welding attached plate, length and hole size customized | |
| WH82 | 78.1 | 27 | 14.29 | 32 | 44 | 57 | 6.4 | 132 | ||
| WH124 | 101.6 | 36.5 | 19.05 | 38.1 | 41.3 | 70 | 9.5 | 300 | ||
| WH132 | 153.67 | 44.45 | 25.25 | 50.8 | 77.1 | 111.76 | 12.7 | 378 | ||
| WH150 | 153.67 | 44.45 | 25.25 | 63.5 | 77.1 | 111.76 | 12.7 | 398 | ||
| WH155 | 153.67 | 44.45 | 28.42 | 63.5 | 73.6 | 111.25 | 14.27 | 411 | ||
| WH157 | 153.67 | 44.45 | 28.42 | 63.5 | 76.4 | 117.35 | 15.88 | 552 | ||
Forged Chain
| Pitch P(mm) |
Pin Diameter d(mm) |
Plate Width H(mm) |
b1 (mm) |
b2 (mm) |
b3 (mm) |
T1 (mm) |
T2 (mm) |
Wing Width L(mm) |
Rated Strength |
| 100 | 14 | 30 | 15 | 33 | 16 | 13 | 6(8) | Welding attached plate, length and hole size customized | 140KN |
| 125 | 17 | 35 | 17 | 34 | 18 | 8 | 6(8) | 150KN | |
| 142 | 25.4 | 50.8 | 19 | 43 | 20 | 12.2 | 8(10) | 270KN | |
| 142(H) | 25.4 | 50.8 | 29 | 62 | 30 | 15 | 8(10) | 340KN | |
| 150 | 18 | 40 | 18 | 40 | 20 | 11.5 | 6(8.10) | 200KN | |
| 200 | 21 | 45 | 20 | 42 | 22 | 12.2 | 6(8.10) | 270KN |
Company Profile
ZheJiang CZPT CONVEYING EQUIPMENT CO. LTD., Established in 2011, specializing in bucket elevator, conveyor parts manufacturing, in recent years, more than 10 research and development of food conveying accessories obtained national invention and edible new patents.
Our factory is located in Daoshu Industrial Park, HangZhou City, ZheJiang Province, which is 1 of the most developed industrial areas in China. The company covers 28,000 square CZPT with the floor area of 8,000 square meters.
Our main products include elevator bucket, drag conveyor flight, UHMW-PE sheet, PVC elevator belts, elevator bolts, belt fastener, conveyor chains and more than 4 hundred types components which are widely used in bulk material handling and storage industry.
JINGWEI currently has more than 10 units of the whole series of 250-2500g injection molding machines, 1 production line of UHMW-PE sheet which is the higher pressure per unit in China, 1 special production line for PVC CZPT woven belt, 1 production line of elevator bolts and nut, 1 production line for conveyor chains. We annually produce 5 million plastic elevator buckets, 2 million steel buckets, 500 tons of UHMW-PE products, 0.8 million square CZPT of PVC CZPT woven elevator belt, 15 billion sets of elevator bolts, and 60,000 CZPT of conveyor chains.
Our company strictly in accordance with ISO9001 Quality Management System, and has obtained SGS certification. In order to raising working efficiency and reducing the cost of production, our company makes full use of computer network and ERP system to reform integration management in enterprise resource management, on the base of that, we have the ability to provide high quality products with competitive price and best service to customers.
JINGWEI believes the enterprise spirit of “integrity, pragmatic and innovative.” We will strive to become 1 of the best one-stop suppliers in the industry.
| Material: | Steel/Satinless Steel |
|---|---|
| Structure: | Conveyor Chain |
| Surface Treatment: | Shot Peening |
| Chain Size: | Glf/Glr |
| Feature: | Fire Resistant, Oil Resistant, Heat Resistant |
| Function: | transmission |
| Samples: |
US$ 20/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

What are the considerations for selecting a corrosion-resistant conveyor chain?
When selecting a corrosion-resistant conveyor chain, several factors need to be considered to ensure the chain’s longevity and performance in corrosive environments. Here are some key considerations:
1. Material Selection: Choose a chain material that is inherently resistant to corrosion. Stainless steel, such as AISI 304 or AISI 316, is a common choice due to its excellent corrosion resistance properties. Other materials like plastic chains or special alloys can also be considered based on the specific application requirements.
2. Coatings and Surface Treatments: In some cases, additional protective coatings or surface treatments can be applied to enhance the chain’s corrosion resistance. These coatings, such as zinc plating, galvanizing, or epoxy coatings, create a barrier between the chain material and corrosive substances, preventing direct contact and reducing the risk of corrosion.
3. Environmental Compatibility: Consider the specific corrosive agents present in the environment where the conveyor chain will be used. Different corrosive substances, such as acids, alkalis, or saltwater, require specific resistance properties. Ensure that the selected chain material and coatings are compatible with the corrosive agents present in the operating environment.
4. Maintenance and Lubrication: Proper maintenance and lubrication play a crucial role in preventing corrosion and extending the life of a conveyor chain. Regular cleaning, inspection, and application of appropriate lubricants can help remove corrosive contaminants and protect the chain surface from degradation.
5. Testing and Certification: Consider chains that have undergone testing and certification for corrosion resistance in relevant industry standards. Look for certifications such as ISO 9227 (salt spray test) or ASTM B117 (corrosion resistance test) to ensure the chain’s performance in corrosive environments.
By carefully considering these factors and consulting with conveyor chain manufacturers or corrosion-resistant experts, you can select a chain that is well-suited for your specific corrosive environment, minimizing the risk of corrosion-related issues and ensuring optimal performance and longevity.

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 are the advantages of using a conveyor chain in material handling?
Conveyor chains offer numerous advantages in material handling applications, making them a preferred choice in various industries. Here are some of the key advantages:
- Efficient Transportation: Conveyor chains provide a continuous and reliable means of transporting materials, ensuring a smooth flow throughout the production or distribution process. They can handle both light and heavy loads, enabling efficient movement of items of different sizes and weights.
- Increased Productivity: By automating the material handling process, conveyor chains help increase productivity and operational efficiency. They eliminate the need for manual handling and reduce human effort, allowing employees to focus on other tasks, resulting in higher throughput and reduced labor costs.
- Flexibility and Customization: Conveyor chains can be designed and configured to meet specific material handling requirements. They are available in various lengths, widths, and configurations, allowing for customization based on the layout and space constraints of the facility. Additionally, different types of conveyor chains can be selected to handle specific materials or accommodate special handling needs.
- Improved Safety: Conveyor chains enhance workplace safety by reducing the risk of manual lifting and carrying heavy loads. They provide a controlled and controlled movement of materials, minimizing the chances of accidents and injuries. Additionally, safety features such as emergency stop buttons, guardrails, and sensors can be incorporated into the conveyor system to further enhance safety.
- Space Optimization: Conveyor chains utilize vertical and horizontal space efficiently, making them ideal for facilities with limited floor space. They can be designed to navigate corners, inclines, and declines, allowing for optimized layout and maximizing the use of available space.
- Versatility: Conveyor chains are versatile and can handle a wide range of materials, including bulk items, packaged goods, fragile items, and irregularly shaped objects. They can accommodate different types of conveyance methods such as flat, inclined, or spiral conveyors, providing flexibility in material handling processes.
- Improved Inventory Control: Conveyor chains enable better inventory control by facilitating the smooth movement and tracking of materials. They can be integrated with barcode scanners, RFID technology, or other tracking systems to monitor the flow of goods and provide real-time information on inventory levels.
- Reduced Material Damage: Conveyor chains help minimize material damage during handling and transportation. They provide a stable and controlled movement, reducing the risk of items falling or getting damaged due to manual handling or rough transportation methods.
The advantages of using a conveyor chain in material handling include improved efficiency, productivity, safety, space utilization, and inventory control, leading to cost savings and enhanced overall operational performance.


editor by CX 2023-07-25
China Conveyor Agriculture Chain Roller Chain with Scraper roller chain end bolt
Item Description
Fall Cast Chains “Y” Serial
Attributes
• It consists of cast metal backlinks, which can be geared up with different plastic or steel scrapers. The link pin between these backlinks is in a circlip version.
• Specific heat taken care of alloy steel,fall cast and precision machined, with situation hardened.
• Higher power, strong load-carrying capacity.
• Really challenging exterior surface and excellent dress in
resistance.
Technical Specifications
| Product | P (mm) |
H (mm) |
B (mm) |
D (mm) |
b (mm) |
T (mm) |
Breaking Load (Min.) |
Material |
| P100 | 100 | 30 | 33 | fourteen | fifteen.5 | 13 | 140KN | 40Cr |
| P125-B | a hundred twenty five | 35 | 34 | 17 | 17 | eight | 150KN | 40Cr |
| P142 | 142 | 50.eight | 43 | 25 | 19 | 12.two | 180KN | 20CrMnTi |
| 300KN | 40Cr | |||||||
| P142H | 142 | 50 | 62 | 25 | 29 | 15 | 280KN | 20CrMnTi |
| 460KN | 40Cr | |||||||
| P160 | a hundred and sixty | forty | forty eight | 20 | 22.5 | twenty | 240KN | 40Cr |
| P200 | two hundred | sixty four | fifty | 32 | 23 | fifteen | 390KN | 40Cr |
| P200-E | two hundred | forty five | 42 | twenty | twenty | twelve.two | 200KN | 40Cr |
Be aware: Customised measurements and substance are obtainable on ask for
Roller Conveyor Chains
Characteristics
• It is made up of a mix of inner and outer links.
• The bush/pin connections in between the backlinks are accessible in a circlip, break up pin, or a riveted variation.
• The metal scrapers can be possibly bent or welded.
• UHMWPE lights are proposed to connect to the scrapers for more eficiency and higher put on resistance.
GLF Variety
Complex Specifications
| Model | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Variety of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLF66.675 (6)D×182 |
66.675 | 266.7 | 26 | thirty | 6 | six | 22.23 | twelve.seven | 182 | ninety | 150 | four | 9 | a hundred thirty | |
| GLF66.675 (6)D×215 |
sixty six.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | twelve.seven | 215 | ninety five | 195 | four | nine | a hundred thirty | |
| GLF66.675 (6)D×295 |
sixty six.675 | 266.seven | 26 | 30 | six | six | 22.23 | 12.seven | 295 | 95 | 195 | 4 | nine | 130 | |
| GLF100 (6)D×170 |
100 | two hundred | 38 | 40 | six | 6 | 36 | 21.six | sixteen | one hundred seventy | one hundred fifteen | two | nine | 220 | |
| GLF100 (6)D×225 |
a hundred | 200 | 38 | 40 | six | 6 | 36 | 21.6 | sixteen | 225 | 104 | 194 | four | nine | 220 |
| GLF100 (6)D×294 |
100 | two hundred | 38 | 40 | six | six | 36 | 21.6 | sixteen | 294 | one hundred fifteen | 245 | four | 9 | 220 |
| GLF100 (5)×225 |
one hundred | two hundred | 28 | thirty | five | 5 | 22.23 | fourteen.27 | 225 | 95 | 195 | 4 | nine | 90 | |
| GLF125 (8)D×285 |
one hundred twenty five | five hundred | fifty | fifty | eight | eight | 32 | 19.9 | 285 | 155 | 255 | 4 | 9 | 220 | |
| GLF125 (6)×235 |
a hundred twenty five | 250 | 32.5 | forty | six | 6 | 28.fifty eight | 20 | fourteen.27 | 235 | ninety five | 195 | four | nine | 170 |
| GLF160 (6)×290 |
160 | 320 | 27 | forty five | six | six | 32 | twenty | fourteen.27 | 290 | 193 | two | nine | 193 |
GLR Variety
Technological Requirements
| Product | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Quantity of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLR66.675 | 66.675 | 266.seven | 27.five | thirty | six | six | 24 | 13 | a hundred thirty | 102 | 32 | four | 9 | ninety | |
| GLR100 | a hundred | two hundred | 38 | 40 | six | 6 | 36 | 21.6 | 16 | one hundred thirty | 102 | 32 | 4 | nine | 220 |
Other merchandise of our conveyor components:
Could you please ship me inquiry for information?
|
US $10 / Meter | |
1 Meter (Min. Order) |
###
| Material: | Steel |
|---|---|
| Structure: | Roller Chain |
| Surface Treatment: | Oxygenation |
| Transport Package: | Pallet |
| Specification: | GLF, GLR |
| Trademark: | Yutung |
###
| Samples: |
US$ 10/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| Model | P (mm) |
H (mm) |
B (mm) |
D (mm) |
b (mm) |
T (mm) |
Breaking Load (Min.) |
Material |
| P100 | 100 | 30 | 33 | 14 | 15.5 | 13 | 140KN | 40Cr |
| P125-B | 125 | 35 | 34 | 17 | 17 | 8 | 150KN | 40Cr |
| P142 | 142 | 50.8 | 43 | 25 | 19 | 12.2 | 180KN | 20CrMnTi |
| 300KN | 40Cr | |||||||
| P142H | 142 | 50 | 62 | 25 | 29 | 15 | 280KN | 20CrMnTi |
| 460KN | 40Cr | |||||||
| P160 | 160 | 40 | 48 | 20 | 22.5 | 20 | 240KN | 40Cr |
| P200 | 200 | 64 | 50 | 32 | 23 | 15 | 390KN | 40Cr |
| P200-E | 200 | 45 | 42 | 20 | 20 | 12.2 | 200KN | 40Cr |
###
| Model | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Number of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLF66.675 (6)D×182 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 182 | 90 | 150 | 4 | 9 | 130 | |
| GLF66.675 (6)D×215 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 215 | 95 | 195 | 4 | 9 | 130 | |
| GLF66.675 (6)D×295 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 295 | 95 | 195 | 4 | 9 | 130 | |
| GLF100 (6)D×170 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 170 | 115 | 2 | 9 | 220 | |
| GLF100 (6)D×225 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 225 | 104 | 194 | 4 | 9 | 220 |
| GLF100 (6)D×294 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 294 | 115 | 245 | 4 | 9 | 220 |
| GLF100 (5)×225 |
100 | 200 | 28 | 30 | 5 | 5 | 22.23 | 14.27 | 225 | 95 | 195 | 4 | 9 | 90 | |
| GLF125 (8)D×285 |
125 | 500 | 50 | 50 | 8 | 8 | 32 | 19.9 | 285 | 155 | 255 | 4 | 9 | 220 | |
| GLF125 (6)×235 |
125 | 250 | 32.5 | 40 | 6 | 6 | 28.58 | 20 | 14.27 | 235 | 95 | 195 | 4 | 9 | 170 |
| GLF160 (6)×290 |
160 | 320 | 27 | 45 | 6 | 6 | 32 | 20 | 14.27 | 290 | 193 | 2 | 9 | 193 |
###
| Model | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Number of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLR66.675 | 66.675 | 266.7 | 27.5 | 30 | 6 | 6 | 24 | 13 | 130 | 102 | 32 | 4 | 9 | 90 | |
| GLR100 | 100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 130 | 102 | 32 | 4 | 9 | 220 |
|
US $10 / Meter | |
1 Meter (Min. Order) |
###
| Material: | Steel |
|---|---|
| Structure: | Roller Chain |
| Surface Treatment: | Oxygenation |
| Transport Package: | Pallet |
| Specification: | GLF, GLR |
| Trademark: | Yutung |
###
| Samples: |
US$ 10/Piece
1 Piece(Min.Order) |
|---|
###
| Customization: |
Available
|
|---|
###
| Model | P (mm) |
H (mm) |
B (mm) |
D (mm) |
b (mm) |
T (mm) |
Breaking Load (Min.) |
Material |
| P100 | 100 | 30 | 33 | 14 | 15.5 | 13 | 140KN | 40Cr |
| P125-B | 125 | 35 | 34 | 17 | 17 | 8 | 150KN | 40Cr |
| P142 | 142 | 50.8 | 43 | 25 | 19 | 12.2 | 180KN | 20CrMnTi |
| 300KN | 40Cr | |||||||
| P142H | 142 | 50 | 62 | 25 | 29 | 15 | 280KN | 20CrMnTi |
| 460KN | 40Cr | |||||||
| P160 | 160 | 40 | 48 | 20 | 22.5 | 20 | 240KN | 40Cr |
| P200 | 200 | 64 | 50 | 32 | 23 | 15 | 390KN | 40Cr |
| P200-E | 200 | 45 | 42 | 20 | 20 | 12.2 | 200KN | 40Cr |
###
| Model | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Number of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLF66.675 (6)D×182 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 182 | 90 | 150 | 4 | 9 | 130 | |
| GLF66.675 (6)D×215 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 215 | 95 | 195 | 4 | 9 | 130 | |
| GLF66.675 (6)D×295 |
66.675 | 266.7 | 26 | 30 | 6 | 6 | 22.23 | 12.7 | 295 | 95 | 195 | 4 | 9 | 130 | |
| GLF100 (6)D×170 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 170 | 115 | 2 | 9 | 220 | |
| GLF100 (6)D×225 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 225 | 104 | 194 | 4 | 9 | 220 |
| GLF100 (6)D×294 |
100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 294 | 115 | 245 | 4 | 9 | 220 |
| GLF100 (5)×225 |
100 | 200 | 28 | 30 | 5 | 5 | 22.23 | 14.27 | 225 | 95 | 195 | 4 | 9 | 90 | |
| GLF125 (8)D×285 |
125 | 500 | 50 | 50 | 8 | 8 | 32 | 19.9 | 285 | 155 | 255 | 4 | 9 | 220 | |
| GLF125 (6)×235 |
125 | 250 | 32.5 | 40 | 6 | 6 | 28.58 | 20 | 14.27 | 235 | 95 | 195 | 4 | 9 | 170 |
| GLF160 (6)×290 |
160 | 320 | 27 | 45 | 6 | 6 | 32 | 20 | 14.27 | 290 | 193 | 2 | 9 | 193 |
###
| Model | Pitch (P) |
Scraper Distance (P1) |
Inner Width (b) |
Plate Width (B) |
T1 | T2 | Roller Dia. (D) |
Bush Dia. (D2) |
Pin Dia (D1) |
Chain Width (L) |
E1 | E2 | Number of Holes (n) |
d | Breaking Load in KN (Min.) |
| GLR66.675 | 66.675 | 266.7 | 27.5 | 30 | 6 | 6 | 24 | 13 | 130 | 102 | 32 | 4 | 9 | 90 | |
| GLR100 | 100 | 200 | 38 | 40 | 6 | 6 | 36 | 21.6 | 16 | 130 | 102 | 32 | 4 | 9 | 220 |
Roller Chain Maintenance Tips
There are many things to keep in mind when maintaining a roller chain. The main reasons include friction and external influences. Without proper lubrication and adjustment, such chains will wear prematurely. Here are some tips for keeping your roller chain in top shape. continue reading! This will make your process easier. We will also discuss the cost of the new roller chain. As always, remember to check for loose ends and adjust the chain regularly.
Preloading
Roller chains are designed to accommodate many different types of loads. Sprockets are the main cause of chain wear. Axial and angular misalignment occurs when the sprocket faces are not properly aligned. Both types of misalignment increase stress and wear on the roller chain. They can also negatively affect the drive. Therefore, choosing the right chain is an important consideration.
Preloading helps to eliminate initial elongation and extend service life. The benefits of preloading can be seen in the preloading chart. Significant elongation occurs during drive startup with no or minimal preload. This is due to the surface hardness of the worn parts. On the other hand, a properly preloaded chain shows little elongation during the initial start. Therefore, proper preload can prolong wear life.
Although elongation is a natural phenomenon in any drive, it can be minimized or eliminated with proper maintenance. In addition to regular inspections, you should do a full inspection of your chain after the first hundred hours. This inspection should focus on key life factors such as 3% elongation, how the chain is lubricated, and any other issues that may affect life. A good quality chain should have the longest life and no problems.
There are many different roller chain specifications. A good rule of thumb is to choose chains with at least five links. Then, tighten the chain until a break occurs, and it will tell you what kind of break occurred. Alternatively, you can use a roller chain with the maximum allowable load. As long as the MAL doesn’t exceed that number, it’s still perfectly safe to use it for any application.
lubricating
When it comes to lubrication, there are several different techniques. For example, spray lubrication is a popular method for high-horsepower drives and high-load and fast-moving machines. This method is very effective, but it is expensive, and spraying the chain too far out of the guard can cause leaks. Another common method is brush lubrication. Brush lubrication involves applying a continuous flow of oil to the chain, pushing it into the chain. This lubrication technique reduces the application temperature of the chain. Also, it can extend the life of the chain, depending on the manufacturer’s specifications.
While the lubrication of roller chain couplings varies by application, sprocket hubs should be lubricated monthly to ensure proper sealing. The amount of oil used depends on the rotational speed and the type of roller chain coupling. In general, lubricants used in roller chain couplings should have excellent adhesion, oxidation, and mechanical stability.
Wear-resistant lubricants are recommended. They prevent the rollers from sticking to each other and prevent rusting. These lubricants have low surface tension and are not harmful to metal or O-ring chains. The optimum lubrication method depends on ambient temperature, horsepower, and chain speed. Properly lubricating a roller chain increases the life of the chain and reduces the risk of wear.
Proper lubrication of the roller chain is essential to prevent corrosion and prolong its service life. The oil forms a smooth film on the chain components, reducing metal-to-metal contact and minimizing friction and wear. Additionally, the oil provides a smooth running surface and reduces noise. However, the running-in process of roller chain lubrication cannot be underestimated. When using heavy-duty oils, ensure that the lubricant is compatible with operating and ambient temperatures.
Maintain
To extend the life of your roller chain, you need to carry out regular inspections. First, you should check the T-pin on the link plate at the joint. If they are not connected properly, it can cause the chain to stretch and not maintain proper spacing and timing. Next, you should look for unusual noise, corrosion, and dirt that may indicate wear. If you notice any of these problems, it’s time to replace the chain.
In order to properly maintain a roller chain, both areas of the roller chain must be lubricated with the correct lubricant. Lubricants used should be SAE non-degreased oils. There are several types of lubricants available, but the best one is a petroleum-based oil with a high viscosity. You can also check for signs of wear, such as red or brown discoloration. This means that there is not enough lubrication.
While the life expectancy of a roller chain is unknown, it is important to know how to extend its life and maximize its effectiveness. Improper tension and alignment can shorten its life and place undue stress on the drive system and the chain itself. Incorrect tension can also lead to slippage and increased energy output. Therefore, you should calculate the tension and alignment of the chain during the initial installation. Check and adjust regularly.
Another way to extend the life of your rollers is to thoroughly clean the inside and outside of the rollers. You should also lubricate it frequently to prevent excessive heat buildup. Designed to prevent overheating by limiting the amount of work during break-ins. Additionally, regular inspections will help you catch anomalies early enough to stop operations. Last but not least, regular lubrication will prolong the life of the roller chain.
Cost
Buying a roller chain is a big decision, but initial cost shouldn’t be the only consideration. The cost of the roller chain itself, as well as the running costs, should be considered. Even the lowest-priced chains can be more expensive in the long run. Additionally, maintenance and energy costs may increase. The best roller chain for your business will be the one that best suits your needs. Listed below are some considerations to consider when purchasing a roller chain.
First, what material should you use? Roller chains come in many different materials. Stainless steel is a commonly used material in construction. Materials are selected based on the cost and design of chain horsepower transmission. Various manufacturing processes will determine which material is suitable for your application. Also, the weight of the chain will vary depending on its pitch and the construction technique used. A large part of the cost of a roller chain is on the drive sprocket.
Another consideration is installation cost. Roller chains are commonly used in agricultural and transportation applications, especially for agronomic products. If lubrication is your concern, maintenance-free chains are the best choice. Corrosion-resistant chains are ideal for wet environments. They are sold in boxed lengths, so replacing a longer length requires adding a shorter length. To avoid trouble, use the skateboard to help connect the links.
Another consideration is the overall width. The overall width of an open #40 roller chain may vary but should be at least 10 feet wide. Although it is not the most expensive type of roller chain, it will last longer. Using it correctly will increase its overall longevity, so it’s a good idea to choose it wisely. If your business uses roller chains regularly, the cost reduction is well worth it.
Application
A roller chain consists of a pair of alternating pins and roller links. The pins are pressed into the side panels and hinged to the rollers. Roller chains can be single or multi-strand, connected by a common pin. The multi-strand design provides higher shear strength for demanding power transmission applications. Typical applications for roller chains include conveyors, hoists, and other mechanical equipment.
The horsepower capability of a roller chain is limited by several factors, including pin shock and friction. While research into these factors has placed some limits on the maximum operating speed of the roller chain, practical experience has shown that these systems can be used at higher speeds. Proper lubrication and cooling can increase the durability of these chains. In addition, roller chain applications include:
Drive and conveyor systems are the two main uses of roller chains. During driving operations, wear and elongation are a natural part of the operation. However, lubrication plays a vital role in minimizing wear and shock loads. Therefore, wear is inevitable and special care must be taken to ensure proper lubrication. Additionally, lubrication reduces heat dissipation in the chain.
The materials used to make roller chains vary from one type to another. Stainless steel is common, but nylon or brass are sometimes used. These materials are less expensive and more durable than steel or stainless steel. The best material for the job depends on a variety of factors, including cost, environmental conditions, and design horsepower transmission. For example, the pin bushing contact area is a critical area requiring lubrication. Additionally, some coatings are designed to retard the corrosive effects of water or oil.

editor by czh 2023-01-13