China Hot selling Short Pitch Precision B Series Roller Chains for Motor/Machine/Auto

Product Description

 Granville Electrical & Mechanical Company Limited

Chain, Sprocket & Pulley

01 Introduction
>Granville supply a vast range of power transmission products.
>We have the ability to keep target inventory and manufacture made to order products to meet the needs of any specific application.
>We offer exceptional delivery times on stock and made-to-order products.
02 Applications:

1 Driving system
2 Sand and CHINAMFG quarries
3 Pulp and paper industry
4 Food and beverage
5 Oil and gas
6 Metals
7 Mining, mineral processing and cement
8 Unit packaging, and recycling

 

1 Short pitch precision roller chains (A.B Series)
2 Heavy duty series roller chains
3 Cottered type short pitch chains (A series)
4 SP series high strength short pitch roller chains O-Ring chains
5 Corrosion resistant/Zinc, Nickel-plated chains
6 Side bow chains
7 Self-lubrication roller chains
8 Coupling chains
9 Double pitch transmission chains

 

About Roller Chain and Sprockets

>>Roller Chain
Roller chain links engage with matched sprocket teeth to transmit power between rotating shafts. Since there’s no slippage and little stretch, chain drives can handle heavy loads and high torque.
Sizing Roller Chain and Sprockets-ANSI roller chain and sprockets have a standard ANSI number. Metric roller chain and sprockets have a standard ISO number. Only use chain and sprockets with the same number together.

Determine size by measuring pitch. Pitch is the distance between the pin centers of a chain link.

Link Types
Connecting links are also known as master links. They’re used to join the ends of a chain length. The side plate is easy to remove for attaching to a chain.
Adding links are also known as roller links. They require 2 connecting links to join chain.
Adding-and-connecting links are also known as half links and offset links. A combination of connecting and adding links, they can join chain that requires an odd number of links. The side plate is easy to remove for attaching to the chain.

>>Choosing a Sprocket
Sprockets attach to rotating shafts and transmit power to your roller chain. Idler sprockets maintain constant tension on your drive by pressing against your chain to take up the slack and reduce wear and vibration. Bushing-bore sprockets mate with bushings that can be swapped out for different bore size, so there’s no need to replace your sprocket when working with multiple shaft diameters. Machinable-bore sprockets have an unfinished bore that can be machined for a custom fit. 
>>Metric Roller Chain and Links
This chain conforms to ISO 606B and is compatible with BS 228 (British standard) and DIN 8187 (German standard).
Connecting links are also known as master links. They’re used to join the ends of a chain length. The side plate is easy to remove for attaching to a chain. Adding-and-connecting links are also known as half links and offset links. They can join chain that requires an odd number of links. For trade size 04B and 05B, an additional connecting link is required to join them to chain. 

DIN/SO Chain No Pitch Roller diametor Width between Inner plates Pin diameter Pin length Inner plate depth Plate thickness Ultimate  Average tensile strength Weight meter
P d1 max b1 min d2 max L max Lc max h2 max VT max Q min Qo q
mm mm mm mm mm mm mm mm KN/LB kN kg/m
05B-1 8 5.00 3.00 2.31 8.20 8.9 7.10 0.80 5.0/1136 5.9 0.20
06B-1 9.525 6.35 5.72 3.28 13.15 14.1 820 1.30 9.0/2045 104 0.43
08B-1 12.70 8.61 7.75 4.46 16.70 182 11.80 1.60 18.0/4091 194 0.71
10B-1 15.875 10.16 9.65 5.08 19.50 20.9 14.70 1.70 22.4/5091 27.5 0.96
12B-1 19.05 12.07 11.68 5.72 22.50 242 16.00 1.85 29.0/6591 32.2 1.21
16B-1 25.40 15.88 17.02 8.28 36.10 37.4 21.00 4.15/3.1 60.0/13638 72.8 2.70
20B-1 31.75 19.05 19.56 10.19 41.30 45.0 26.40  4.5/3.6 95.0/21691 100.7 3.70
24B-1 30.10 25.40 25.40 14.63 53.40 57.8 33.20  6.0/4.8 160.0/36364 178.0 7.10
20B-1 44.45 27.94 30.99 15.90 65.10 69.5 36.70 7.5/6.0 200.0/45455 222.0 8.50 
32B-1 50.80 29 30.99 17.81 66.00 71 42.00 7.0/8.0 250.0/56818 277.5 10.25
40B-1 63.50 30.37 36.10 22.88 82.20 892 62.96 8.5/8.0 336.0/0682 394.0 16.35
48B-1 76.20 48.26 45.72 29.24 99.10  107.0 63.80 12.0/10.0 560.0/127272 621.6 25.00
56B-1 86.90 53.98 53.34 34.32 114.6 123.0 77.80 13.5/12.0 850.0/193160 940.0 35.78

>>Material Available & Applications

More
To get a quote or for additional information please contact us and we’ll be happy to assist you.

What We Do

01 Service
>
Granville helps customer transmit mechanical power with abroad offering of  power translocation components, and systems for automotive and various Industrial applications.
>Whether your Industry is involved in agriculture, construction, automobiles, food, mining, oil & gas, or metal handling, Granville can meet your needs with the exact transmission you need, when you need it.
>On-going research and development efforts allow Granville to continuously improve quality, enhance production processes, and add value.
02 Related Product Ranges

1 Driving Chains (This Page)
2 Conveyor Chains
3 Auto, Bicycle & Motorcycle Chains
4 Leaf & Hoising Chains
5 Sprockets
6 Gears
7 Synchronous Sprockets
8 Sheaves
9 Couplings

Click to the related page

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Standard or Nonstandard: Standard
Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Marine, Mining Equipment, Agricultural Machinery, Car
Surface Treatment: Chrome/Zinc/Nickel Plating/Polishing
Samples:
US$ 0/Meter
1 Meter(Min.Order)

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Negotiation
Customization:
Available

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

motor chain

Can a motor chain be used in vertical motion applications?

Yes, a motor chain can be used in vertical motion applications. Vertical motion refers to applications where the chain is responsible for lifting or lowering loads vertically. Motor chains are commonly used in various vertical motion systems, such as elevators, vertical conveyors, lifting mechanisms, and overhead cranes.

When using a motor chain for vertical motion, it is important to consider the following factors:

1. Load Capacity:

Ensure that the motor chain has sufficient load-carrying capacity to handle the weight of the load being lifted or lowered. It is crucial to select a chain with a suitable working load limit to ensure safe and efficient operation.

2. Tensioning and Alignment:

Proper tensioning and alignment of the motor chain are critical in vertical motion applications. The chain should be adequately tensioned to prevent excessive slack or sag, which can affect its performance and increase the risk of derailment.

3. Safety Mechanisms:

Implement appropriate safety mechanisms, such as limit switches or overload protection devices, to ensure safe operation and prevent accidents in vertical motion applications. These mechanisms help detect and respond to abnormal conditions, such as excessive load or chain tension.

4. Lubrication and Maintenance:

Regular lubrication and maintenance are essential for the proper functioning and longevity of the motor chain in vertical motion applications. Ensure that the chain is properly lubricated to minimize friction and wear.

5. Compliance with Regulations:

Ensure that the motor chain and associated components comply with relevant safety and industry regulations for vertical motion applications. This includes adherence to standards and guidelines for load capacity, materials, design, and installation.

By considering these factors and following proper installation and maintenance practices, a motor chain can be effectively used in vertical motion applications, providing reliable and efficient performance.

motor chain

Can a motor chain handle heavy loads?

Yes, motor chains are designed to handle heavy loads in various applications. Here are some factors to consider:

1. Chain Strength: Motor chains are available in different strength ratings, typically measured in terms of their maximum allowable tension or breaking strength. It is important to select a motor chain with a strength rating suitable for the anticipated loads in your application. Chains with higher strength ratings can handle heavier loads.

2. Chain Material: Motor chains are commonly made from high-strength steel or alloy materials that provide excellent durability and load-bearing capacity. The choice of material depends on the specific application requirements, including the expected load, environmental conditions, and any regulatory standards.

3. Chain Design: Motor chains designed for heavy-load applications often have robust construction features to enhance their load-carrying capabilities. These may include larger pitch sizes, thicker plates, hardened components, and precision manufacturing. The design ensures that the chain can withstand the forces and stresses associated with heavy loads.

4. Lubrication: Proper lubrication is essential for motor chains handling heavy loads. It helps reduce friction and wear, ensuring smooth operation and extending the chain’s service life. Adequate lubrication also prevents overheating and corrosion, which can negatively impact the chain’s load-carrying capacity.

5. Sprocket Design: The sprockets that engage with the motor chain also play a crucial role in handling heavy loads. Sprockets should be designed to evenly distribute the load across the chain and provide reliable engagement. Robust and properly sized sprockets ensure that the chain can effectively transmit the heavy loads without excessive wear or failure.

When considering a motor chain for heavy-load applications, it is important to consult the manufacturer’s specifications and guidelines. They can provide detailed information on the chain’s load-carrying capacity, including factors such as tensile strength, working load limits, and recommended safety factors. Proper chain selection, regular maintenance, and adherence to load limitations are key to ensuring safe and efficient operation under heavy loads.

motor chain

How does a motor chain differ from a regular chain?

A motor chain, also known as a power transmission chain, differs from a regular chain in terms of its design and purpose. Here are the key differences:

1. Load Capacity: Motor chains are specifically designed to handle higher loads compared to regular chains. They are built to transmit power and motion between different components in mechanical systems.

2. Precision and Accuracy: Motor chains often have precise tooth profiles or roller systems that ensure accurate positioning and synchronization of components. This is important in applications such as engines, where precise timing is critical.

3. Durability and Strength: Motor chains are built to withstand heavy loads, high speeds, and continuous operation. They are constructed using high-quality materials and advanced manufacturing techniques to ensure durability and strength.

4. Lubrication and Maintenance: Motor chains may require specific lubrication to reduce friction and wear, ensuring smooth operation. Regular maintenance, such as periodic inspection and lubrication, is important to keep the chain in optimal condition.

5. Application-Specific Design: Motor chains are designed for specific applications, such as power transmission in engines, conveyor systems, or lifting equipment. They are engineered to meet the unique requirements of these applications, considering factors such as load capacity, speed, environment, and operational conditions.

It’s important to note that while motor chains are designed for specific applications, they may have similarities with regular chains in terms of basic construction and functionality. However, motor chains are engineered to handle higher loads, provide precise motion transmission, and ensure reliable performance in demanding industrial settings.

China Hot selling Short Pitch Precision B Series Roller Chains for Motor/Machine/Auto  China Hot selling Short Pitch Precision B Series Roller Chains for Motor/Machine/Auto
editor by CX 2024-04-26