Product Description
Stainless Steel Wire Mesh Belt / Chain Conveyor Belt
Product Description
| Product Name | Conveyor Belt |
| Structure | Mesh-Blet |
| Certifications | ISO 9001: 2008, GB/T19001-2000IDT, Test Report |
| Work Temp | -40Celsius ~ 90Celsius |
| Material Feature | Heat Resistant |
| Material | Stainless Steel, SS304/SS201/carbon steel |
| Voltage | 220V 380V |
| Surface Treatment | Galvanized, 3% chromium plate, manganese plated |
| Application | Frozen Food Machinery, Canned Food Machinery, Seafood Machinery, Powder Metallurgy Machinery |
| Heat Treatment Machinery, Glass Machinery, Chemical Machinery, General Conveying Machinery, etc. |
Products Details
Chain-Driven Metal Mesh Belts
Chain-driven metal mesh belts should be considered whenever timing, transfer, and/or positive belt drive are important … in cases such as travel-up inclines, under heavy loads, for long distances, through quenching liquids, cooking oils, or other slippery conditions.
Chain-driven belts are also the only belts that are self-supporting. They can provide efficient operation in applications where friction-driven belts would not be desirable. Any mesh can be used in a chain-driven construction, but the selection is made on the basis of what is needed to support the product.
Balanced weave should be given first consideration, as it is economical and appropriate for most conditions. Gratex weave provides a closer mesh, while a Duplex weave is a close mesh that also provides strength and a straight-through opening. A conventional weave provides unobstructed openings.
Typical Applications
In food processing, chain-driven belts are used in washing, drying, cooking, freezing, dewatering, and blanching operations. In other applications, metals, electronic parts, chemicals, ceramics, leather, lumber, textiles, rubber, and many other products are moved through a host of processes where the positive drive is needed.
Chain Selection
Chains are normally selected according to the strength and speed required. The most frequently used types of chain for metal mesh conveyors are roller chain, employed for most room-to-medium temperature applications, and pintle chain which is recommended for heavier loads and higher temperatures.
Due to the important and specialized nature of the applications requiring these products, each inquiry is reviewed thoroughly. Our goal is to supply the most suitable belt for your specific application. We strive to provide solutions for each situation, assuring value for our customers. Our engineers and technical support group are involved in every specialty belt inquiry and order.
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DETAILS ABOUT CHINAMFG CHAIN
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FAQ
1. Are you a manufacturer or trade Company?
We are a factory founded in 1997 with a trade team for international service.
2. What terms of payment do you usually use?
T/T 30% deposit and 70% against document, Western Union, L/C at sight
3. What is your lead time for your goods?
Normally 35 days after confirmed order. 30 days could be available in the low season for some items (during May to July), and 45 days during the new year and hot season ( Jan to March).
4. Samples
For customers who need sample confirmation before ordering, please bear in mind that the following policy will be adopted:
1) All samples are free of charge with a maximum value not exceeding USD 100.
2) The courier cost for the first-time sample sending will be charged by the consignee. We will send the samples with freight to be collected. So please inform your account with FedEx, UPS, DHL, or TNT so that we can proceed promptly.
3) The first-time courier cost will be totally deducted from the contract value of the trial cooperation. /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Type: | All Sizes |
|---|---|
| Material: | Steel |
| Inside Material: | Polyester |
| Feature: | Oil-Resistant, Acid And Alkali Resistant, Tear-Resistant, Heat-Resistant, Cold-Resistant, Wear-Resistant |
| Tensile Strength: | Common |
| Structure: | Mesh-Blet |
| Customization: |
Available
| Customized Request |
|---|

What are the factors to consider when designing a gripper chain system?
Designing a gripper chain system involves considering various factors to ensure optimal performance and functionality. Here are some key factors to consider:
- Application requirements: Understand the specific requirements of the application, including the type of product to be conveyed or gripped, the desired speed and throughput, the environmental conditions, and any regulatory or industry-specific standards that need to be met.
- Load capacity: Determine the maximum load the gripper chain system needs to handle. Consider the weight, size, and shape of the products to be conveyed or gripped, as well as any dynamic or impact loads that may be present.
- Gripping mechanism: Choose the appropriate gripper elements or attachments based on the product characteristics and the required grip strength. Consider factors such as grip surface area, material compatibility, and the ability to release the product smoothly and accurately.
- Chain configuration: Select the appropriate chain type, pitch, and width based on the load requirements, speed, and available space. Consider factors such as the desired conveying or gripping motion, the required flexibility, and the overall system layout.
- Material selection: Choose materials for the chain links, gripper elements, and other components that are compatible with the product being conveyed or gripped, as well as the operating environment. Consider factors such as corrosion resistance, wear resistance, and the ability to withstand any temperature or chemical exposures.
- System integration: Ensure proper integration of the gripper chain system with the overall conveyor or handling equipment. Consider factors such as the sprocket design, drive mechanism, tensioning system, and any automation or control requirements.
- Maintenance and durability: Consider the ease of maintenance, accessibility for cleaning, and the expected lifespan of the gripper chain system. Choose components that are durable and reliable to minimize downtime and maximize operational efficiency.
It is crucial to work closely with experienced engineers, conveyor system manufacturers, or suppliers specializing in gripper chain systems to ensure the design meets the specific requirements of the application and delivers optimal performance and reliability.

How do gripper chains handle side-to-side movement in conveying applications?
Gripper chains are designed to effectively handle side-to-side movement in conveying applications. Here’s how they handle this movement:
Gripper chains typically consist of a series of interconnected links with gripper attachments. These grippers securely hold the conveyed items, such as bottles, containers, or products, during the conveying process. The grippers are strategically positioned along the chain and can be customized to match the shape and size of the conveyed items.
When side-to-side movement is required in a conveying application, gripper chains can accommodate this through specific design features:
1. Gripper Attachment Design: Gripper chains are designed with gripper attachments that allow the items to move laterally while still maintaining a secure grip. The grippers are typically flexible or have some degree of movement to accommodate the side-to-side motion without compromising the grip on the conveyed items.
2. Chain Flexibility: Gripper chains are designed to have a certain level of flexibility, allowing them to adapt to the side-to-side movement of the conveyed items. This flexibility ensures that the grippers can adjust their position and maintain a reliable grip on the items during lateral motion.
3. Guide Rails and Track Systems: In some cases, guide rails or track systems are used in conjunction with gripper chains to guide the lateral movement of the conveyed items. These guide rails provide additional stability and control, ensuring smooth and precise side-to-side motion.
4. Tensioning Systems: Proper tensioning of the gripper chains is crucial to maintain consistent and reliable performance during side-to-side movement. Tensioning systems, such as tensioners or adjusters, are used to control the tension in the chain, ensuring optimal grip and minimizing slack that could affect the lateral movement.
By utilizing these design features, gripper chains can effectively handle side-to-side movement in conveying applications. They provide secure gripping and reliable transportation of items, even when lateral motion is required.

What are the advantages of using a gripper chain in conveyor systems?
Using a gripper chain in conveyor systems offers several advantages that enhance the efficiency and effectiveness of material handling processes. Here are the detailed benefits:
- Improved Grip: Gripper chains are specifically designed to provide a secure grip on items being transported. They utilize gripper fingers or jaws that can securely hold various shapes, sizes, and weights of objects, minimizing the risk of slippage or product damage during transportation.
- Versatile Handling: Gripper chains offer versatility in handling different types of items. They can effectively handle products with irregular shapes, delicate surfaces, or varying dimensions, ensuring reliable and stable transport throughout the conveyor system.
- Flexible Application: Gripper chains can be utilized in various industries and applications, including packaging, assembly lines, automotive, pharmaceuticals, and food processing. Their adaptability makes them suitable for a wide range of product types and conveyor configurations.
- Accurate Positioning: Gripper chains enable precise positioning of items along the conveyor system. The gripper fingers or jaws can be designed to open and close at specific points, allowing for accurate placement or transfer of products onto subsequent conveyors or workstations.
- High Throughput: Gripper chains can facilitate high-speed conveying operations, ensuring efficient material flow and increased productivity. Their reliable grip and quick release mechanisms enable rapid item transfer, reducing cycle times and maximizing throughput.
- Reduced Product Damage: The secure grip provided by gripper chains minimizes the risk of product damage during transportation. The gripper fingers or jaws can be designed with materials or coatings that prevent marring or scratching delicate surfaces, ensuring the integrity and quality of the transported items.
- Enhanced Safety: Gripper chains enhance safety in conveyor systems by reducing the likelihood of items falling or becoming dislodged during transportation. This helps prevent accidents, product losses, and disruptions in the production process.
- Easy Integration: Gripper chains can be easily integrated into existing conveyor systems or customized to meet specific application requirements. They can be designed to fit various conveyor widths, pitches, and attachment methods, allowing for seamless integration and compatibility.
- Durable and Reliable: Gripper chains are built to withstand the rigors of industrial environments. They are constructed from high-quality materials such as stainless steel or hardened carbon steel, ensuring durability, longevity, and reliable performance even in demanding operating conditions.
By utilizing gripper chains in conveyor systems, businesses can achieve efficient, precise, and reliable material handling, leading to improved productivity, reduced product damage, and enhanced overall operational efficiency.


editor by CX 2024-03-27