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China best Chain Double Pitch Sprockets Roller Chain

Product Description

 

Model NO.: P37A

Name:  Chain Double Pitch Sprockets

Inner Slot Option: 25mm/38mm

Teeth: 9 Teeth/11 Teeth

Export Markets: Global

Manipulate Way: Semi-Automatic Manipulation

Changes Way: Stepless

Trademark: XIHU (WEST LAKE) DIS.HUA

 

Product Description

Product Introduce
 

 

Name Chain Double Pitch Sprockets
Inner slot option 25mm/38mm
Teeth 9 teeth/11 teeth
Feature Anti-rust and wearable
Packaging Wooden case or by demand
Delivery with 30-45 days

 

 

A sprocket is a wheel with teeth around the perimeter that meshes with a chain, track, or other perforated or indented material. Unlike gears that mesh with another gear, sprockets mesh with a chain, which then interacts with another sprocket. Gears can be used to transmit power around a corner, based on how they fit together. Sprockets with chains only work in straight lines. Some common benefits of chain-drive systems include minimal slippage, a fixed ratio between rotating shafts, and versatility with many different chain attachments and sprocket material selections. 

 

Standard Or Nonstandard: Nonstandard
Application: Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery
Hardness: Hardened Tooth Surface
Manufacturing Method: Rolling Gear
Toothed Portion Shape: Spur Gear
Material: Carbon Steel
Customization:
Available

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Customized Request

gear chain

Can a gear chain be used in food processing industries?

Yes, gear chains can be used in food processing industries under certain conditions and with proper considerations for hygiene and sanitation. Gear chains made from suitable materials and designed to meet specific industry standards can be used to transmit power and motion in various food processing applications.

Here are some important considerations when using gear chains in food processing:

1. Material Selection:

– Choose gear chains made from food-grade materials such as stainless steel or plastic that are resistant to corrosion and can withstand the demands of food processing environments.

2. Cleanability:

– Ensure that the gear chain design allows for easy cleaning and sanitation. Smooth surfaces, minimal crevices, and easy disassembly are important for effective cleaning and preventing the accumulation of food particles or contaminants.

3. Lubrication:

– Select food-grade lubricants that are compatible with the gear chain material and the specific food processing requirements. Regular lubrication and maintenance are necessary to ensure smooth operation and prevent contamination.

4. Hygiene and Sanitation:

– Follow proper hygiene and sanitation practices in the food processing facility, including regular cleaning and inspection of the gear chain. Implementing procedures such as HACCP (Hazard Analysis and Critical Control Points) can help ensure food safety.

5. Compliance with Regulations:

– Ensure that the gear chain and its components meet relevant food industry regulations and standards, such as those set by the FDA (Food and Drug Administration) or other local regulatory bodies.

It is important to consult with industry experts, equipment manufacturers, and adhere to specific food processing guidelines to ensure the safe and appropriate use of gear chains in food processing applications. Regular maintenance, inspection, and adherence to food safety protocols are essential for maintaining the integrity of the food products and the overall hygiene of the processing environment.

gear chain

What are the noise levels associated with a gear chain?

The noise levels associated with a gear chain can vary depending on several factors. Here are some considerations:

1. Design and Quality: The design and quality of the gear chain play a significant role in determining the noise levels. Well-designed gear chains with proper tooth profiles and precise manufacturing techniques tend to generate less noise.

2. Lubrication: Insufficient or improper lubrication can lead to increased friction and noise in the gear chain. Adequate lubrication helps reduce noise by minimizing metal-to-metal contact and ensuring smooth operation.

3. Load and Speed: Higher loads and speeds can increase the noise levels in a gear chain. The impact of teeth engagement and meshing forces can produce sound, especially under heavy operating conditions.

4. Misalignment and Wear: Misalignment or excessive wear in the gear chain can result in increased noise due to uneven tooth engagement and irregular motion.

5. Surrounding Environment: The noise generated by a gear chain can also be influenced by the surrounding environment. Factors such as reflective surfaces, structural vibrations, and acoustics of the workspace can impact the perceived noise levels.

To reduce the noise levels associated with a gear chain, several measures can be taken:

– Ensure proper lubrication and maintenance of the gear chain to minimize friction and wear.

– Use high-quality gear chains with precise tooth profiles and smooth operation.

– Optimize the operating conditions, including load, speed, and alignment.

– Implement noise reduction measures in the surrounding environment, such as sound-absorbing materials or enclosures.

It’s important to note that while efforts can be made to reduce noise, some level of sound may still be present in gear chain systems. Therefore, it’s recommended to assess the specific noise requirements and consider additional noise mitigation strategies if necessary.

gear chain

How does a gear chain differ from other types of chains?

A gear chain differs from other types of chains in the way it operates and its specific design features:

– Gear Engagement: Unlike standard roller chains or silent chains that rely on the interaction between pins and rollers or plates, a gear chain utilizes gear teeth on the chain links that directly engage with the teeth of the sprockets. This positive engagement provides a secure and efficient transfer of torque.

– Speed Control: Gear chains offer precise speed control due to the gear teeth engagement. By varying the size and number of teeth on the sprockets, the speed ratio between the driving and driven shafts can be accurately adjusted to meet specific application requirements.

– Load Capacity: Gear chains are designed to handle higher loads compared to other types of chains. The gear teeth engagement distributes the load evenly across the chain, resulting in improved load-carrying capacity and resistance to fatigue.

– Compact Design: Gear chains have a more compact design compared to other types of chains. The gear teeth are integrated into the chain links, eliminating the need for separate components like pins, rollers, or plates. This compact design allows for efficient power transmission in applications with limited space.

– Specific Applications: Gear chains are commonly used in mechanical systems that require precise speed control and high load-carrying capacity. They are often found in machinery, automotive systems, robotics, and other applications where accurate power transmission is critical.

– Lubrication: Gear chains typically require lubrication to minimize friction and wear between the gear teeth. Proper lubrication ensures smooth operation and extends the chain’s service life.

In summary, gear chains differ from other types of chains in terms of their gear engagement, precise speed control, higher load capacity, compact design, suitability for specific applications, and lubrication requirements.

China best Chain Double Pitch Sprockets Roller Chain  China best Chain Double Pitch Sprockets Roller Chain
editor by CX 2023-08-15

gear chain

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