China manufacturer Woven Conveyor Belt Chain Combined with Roller Sprockets Multi Strand

Product Description

Product Description

 

Roller Chains – ANSI, BS/DN, Anti-Corrosive and Attachment Types
Roller chains are important components and accessories in the whole conveyor belt system. They are used combined with roller sprockets as drive system to ensure the stable and smooth conveying and transmitting. We can supply all kinds of roller chains for you. Just refer to the following introduction, and decide which 1 is suitable for you. As for the detailed specifications, you can get them in 3 ways:
ANSI standard roller chains are the most widely used power transmission chains in the USA. A true powerhouse in precision & quality, the Nitro ANSI chains are built to handle a broad range of applications across many industries. Rigorous quality standards ensures every chain consistently adheres to our requirements for strength and dependability. ANSI chains come in a several options including multiple strands for applications with higher horsepower requirements.

 Chain Number Pitch Inner Width Roller Diameter Overall Width Pin Diameter Plate Height Plate Thickness
# P b1 d1 L d2 h2 T
25-1* 1/4 1/8 0.130 0.311 0.091 0.228 0.030
35-1* 3/8 3/16 0.200 0.488 0.141 0.346 0.050
40-1 1/2 5/16 0.312 0.653 0.156 0.469 0.060
41-1 1/2 1/4 0.306 0.541 0.141 0.390 0.050
50-1 5/8 3/8 0.400 0.815 0.200 0.585 0.080
60-1 3/4 1/2 0.469 1.571 0.234 0.709 0.094
80-1 1 5/8 0.625 1.287 0.312 0.949 0.125
100-1 1-1/4 3/4 0.750 1.590 0.375 1.188 0.156
120-1 1-1/2 1 0.875 1.980 0.437 1.425 0.187
140-1 1-3/4 1 1.000 2.141 0.500 1.663 0.219
160-1 2 1-1/4 1.125 2.551 0.562 1.889 0.250
180-1 2-1/4 1-13/32 1.406 2.866 0.687 2.047 0.281
200-1 2-1/2 1-1/2 1.562 3.161 0.781 2.375 0.312
240-1 3 1-7/8 1.875 3.760 0.937 2.791 0.375

Incorporating links that are twice as long as standard roller chains, the roller chain is intended for long drives, low-to-moderate-speed applications, and uses sprockets with at least 24 teeth. They have been produced with thicker sides plates in order to handle higher working loads than standard chains. With a more robust side plate, heavy roller chains maintain their strength and stability over longer periods of time.
Hollow pin roller chain is essentially the same thing as a standard roller chain just with “hollow-pins”. This not only decreases the chain weight, but it also gives you the ability to place extended pins through the chain for conveying product. Many applications include; bakeries, overhead conveyors, elevators, poultry, agricultural, and a wide range of other applications.

Size Pitch (P) (W) (R) (D) (d) Hollow Pin Length (F) (H) (T) Weight
40HP 0.500″ 0.313″ 0.312″ 0.221″ 0.157″ 0.689″ 0.689″ 0.472″ 0.059″ 0.35 LBS/ FT
50HP 0.625″ 0.375″ 0.400″ 0.283″ 0.202″ 0.854″ 0.854″ 0.591″ 0.079″ 0.58 LBS/ FT
60HP 0.750″ 0.500″ 0.469″ 0.333″ 0.236″ 1.055″ 1.055″ 0.713″ 0.094″ 0.81 LBS/ FT
80HP 1.000″ 0.625″ 0.625″ 0.449″ 0.318″ 1.276″ 1.276″ 0.950″ 0.125″ 1.46 LBS/ FT

Multiple strand roller chains are designed to be the multiple stand count stronger than the ANSI or Metric equivalent. An example would be #80-2 double roller chain is “double” the strength as ANSI 80-1 single chain. Our multiple strand roller chains are sure to impress with industry-leading tensile strengths and performance factors. Supplying up to 12 (-12) strand roller chains we are sure to have the multiple strand roller chain for your application. Additionally, we supply corrosion resistant multiple strand roller chains such as stainless, nickel, and coated as well as multiple strand chain sprockets.

Size Pitch (P) (K) (W) (R) (D) (F) (T1) (T2) (H) Weight (LBS/ FT)    
   
04B-2 0.236″ 0.217″ 0.110″ 0.158″ 0.073″ 0.524″ 0.197″ 0.154    
05B-2 0.315″ 0.222″ 0.118″ 0.197″ 0.091″ 0.571″ 0.280″      
06B-2 0.375″ 0.403″ 0.225″ 0.250″ 0.129″ 0.941″ 0.039″ 0.051″ 0.323″ 0.496    
08B-2 0.500″ 0.548″ 0.305″ 0.335″ 0.175″ 1.260″ 0.059″ 0.059″ 0.469″ 0.872    
10B-2 0.625″ 0.653″ 0.380″ 0.400″ 0.200″ 1.457″ 0.059″ 0.059″ 0.579″ 1.127    
12B-2 0.750″ 0.766″ 0.460″ 0.475″ 0.225″ 1.697″ 0.071″ 0.071″ 0.634″ 1.529    
16B-2 1.000″ 1.255″ 0.670″ 0.625″ 0.326″ 2.756″ 0.126″ 0.157″ 0.819″ 3.433    
20B-2 1.250″ 1.435″ 0.770″ 0.750″ 0.401″ 3.169″ 0.138″ 0.177″ 1.571″ 5.076    
24B-2 1.500″ 1.904″ 1.000″ 1.000″ 0.576″ 4.217″ 0.197″ 0.236″ 1.224″ 9.321    
28B-2 1.750″ 2.345″ 1.220″ 1.100″ 0.626″ 5.083″ 1.457″ 11.09    
32B-2 2.000″ 2.305″ 1.220″ 1.150″ 0.701″ 5.102″ 1.662″ 14.571    
40B-2 2.500″ 2.846″ 1.500″ 1.550″ 0.901″ 6.358″ 2.083″ 21.378    
48B-2 3.000″ 3.599″ 1.800″ 1.900″ 1.151″ 7.803″ 2.512″ 33.4    
56B-2 3.500″ 4.197″ 2.100″ 2.125″ 1.351″ 9.039″ 3.063″ 46.765    

Certifications

 

 

Type: Metal Conveyor Belt
Material: Metal
Inside Material: Metal
Samples:
US$ 50/Piece
1 Piece(Min.Order)

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Customization:
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conveyor

Can a conveyor chain be used in pharmaceutical manufacturing?

Yes, conveyor chains can be used in pharmaceutical manufacturing for various applications. Conveyor systems play a crucial role in the efficient and safe transportation of pharmaceutical products throughout the manufacturing process. Here are some key considerations when using conveyor chains in pharmaceutical manufacturing:

1. Material Selection:

– Choose conveyor chains made from materials that are suitable for pharmaceutical applications, such as stainless steel or FDA-approved plastic. These materials offer corrosion resistance, cleanliness, and compliance with industry regulations.

2. Cleanliness and Sanitation:

– Ensure that the conveyor chain design allows for easy cleaning and sanitation. Smooth surfaces, minimal crevices, and access for cleaning equipment are important to maintain a hygienic environment.

3. Contamination Control:

– Implement measures to prevent contamination of pharmaceutical products. This includes using chain lubricants that are safe for pharmaceutical applications and implementing proper handling and storage procedures.

4. Product Protection:

– Choose conveyor chain systems that minimize product damage or degradation. This can include utilizing gentle product handling features such as low-friction surfaces, adjustable speed controls, and proper product spacing.

5. Regulatory Compliance:

– Ensure that the conveyor chain system complies with pharmaceutical industry regulations and guidelines, such as Good Manufacturing Practices (GMP) and the requirements of regulatory bodies like the FDA.

6. Integration with Equipment:

– Consider the integration of conveyor chains with other equipment in the pharmaceutical manufacturing process, such as labeling machines, filling machines, and packaging equipment. The conveyor system should provide seamless operation and synchronization with these machines.

By carefully selecting and designing conveyor chains specifically for pharmaceutical manufacturing, it is possible to meet the stringent requirements of the industry in terms of cleanliness, product integrity, and regulatory compliance.

conveyor

What are the future trends and advancements in conveyor chain technology?

The field of conveyor chain technology is constantly evolving, driven by the need for improved efficiency, productivity, and sustainability. Here are some of the future trends and advancements in conveyor chain technology:

1. Automation and robotics: The integration of conveyor chains with automation and robotics systems is a growing trend. This includes the use of advanced sensors, machine vision, and artificial intelligence to enable autonomous operation, precise positioning, and efficient material handling.

2. Smart and connected systems: Conveyor chains are becoming increasingly connected through the Internet of Things (IoT) technology. This allows for real-time monitoring, data collection, and analysis of various performance parameters such as chain wear, tension, temperature, and energy consumption. Smart systems can optimize maintenance schedules, detect potential failures, and improve overall system efficiency.

3. Lightweight and high-strength materials: The development of lightweight yet high-strength materials is an ongoing focus in conveyor chain technology. Advanced alloys, composites, and engineered plastics offer improved strength-to-weight ratios, reducing energy consumption and increasing the load capacity of conveyor systems.

4. Energy efficiency: Energy efficiency is a key consideration in conveyor chain design. Future advancements aim to minimize power consumption through the use of efficient drive systems, regenerative braking, and smart control algorithms that optimize speed and acceleration profiles. Energy recovery technologies, such as regenerative drives, can also capture and reuse energy during deceleration or braking.

5. Sustainability and environmental friendliness: Conveyor chain technology is moving towards more sustainable and environmentally friendly solutions. This includes the use of eco-friendly materials, improved lubrication techniques to minimize environmental impact, and the adoption of energy-efficient components and systems. Recycling and circular economy concepts are also gaining prominence in the design and manufacturing of conveyor chains.

6. Advanced wear monitoring and predictive maintenance: The future of conveyor chain technology involves advanced wear monitoring systems that can accurately predict the remaining useful life of chains and components. This enables proactive maintenance planning and reduces unplanned downtime. Predictive maintenance algorithms analyze data collected from sensors and provide timely alerts for chain replacement or repair.

These are just a few examples of the future trends and advancements in conveyor chain technology. As technology continues to advance, we can expect further innovations that enhance performance, efficiency, reliability, and sustainability in conveyor systems.

conveyor

How do you properly tension a conveyor chain?

Properly tensioning a conveyor chain is crucial for its smooth operation and to prevent issues like chain slipping or excessive wear. Here are the steps to properly tension a conveyor chain:

  1. Identify the Tensioning Points: Determine the locations where the conveyor chain can be tensioned. These are typically at the ends of the chain or at specific tensioning devices.
  2. Loosen the Tensioning Devices: If there are tensioning devices in place, such as adjustable bolts or tensioning screws, loosen them to allow for adjustment.
  3. Apply Tension: Apply tension to the conveyor chain by either manually pulling the chain or using a tensioning tool. The amount of tension required depends on the chain type and the manufacturer’s recommendations.
  4. Check the Tension: Use a tension gauge or other suitable method to measure the tension of the conveyor chain. The tension should fall within the specified range provided by the chain manufacturer.
  5. Adjust the Tension: If the tension is too loose or too tight, make adjustments accordingly. Tighten or loosen the tensioning devices until the desired tension is achieved.
  6. Secure the Tensioning Devices: Once the proper tension is achieved, securely tighten the tensioning devices to hold the chain in place.
  7. Verify the Tension: After tensioning the chain, perform a visual inspection and run the conveyor to ensure the chain runs smoothly without excessive slack or tightness. Make any further adjustments if necessary.

It’s important to refer to the specific guidelines provided by the conveyor chain manufacturer for proper tensioning instructions, as the exact method may vary depending on the chain type and design. Regularly check the tension of the conveyor chain and make adjustments as needed to maintain optimal performance.

China manufacturer Woven Conveyor Belt Chain Combined with Roller Sprockets Multi Strand  China manufacturer Woven Conveyor Belt Chain Combined with Roller Sprockets Multi Strand
editor by CX 2023-12-01