China OEM Plastic/POM/Steel 83mm Conveyor Flexible Scraper Chain for Conveying Battery Bottle Package

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
Structure: Scraper Chain
Surface Treatment: Polishing
Customization:
Available

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Customized Request

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Shipping Cost:

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about shipping cost and estimated delivery time.
Payment Method:







 

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

conveyor

How do you calculate the required horsepower for a conveyor chain drive?

The calculation of required horsepower for a conveyor chain drive involves considering various factors related to the conveyor system and the specific application. Here is a step-by-step process:

1. Determine the Total Resistance:

– Calculate the total resistance that the conveyor chain needs to overcome during operation. This includes the resistance due to the load being conveyed, frictional losses, elevation changes, and any other resistances in the system.

2. Convert the Resistance to Equivalent Inertia:

– Convert the total resistance to an equivalent inertia by multiplying it by the square of the chain speed.

3. Calculate the Total Inertia:

– Determine the total inertia of the system by considering the inertia of all the rotating components, such as the conveyor chain, sprockets, and any other driven elements.

4. Determine the Required Torque:

– Calculate the required torque by multiplying the total inertia by the desired acceleration or deceleration rate.

5. Convert Torque to Horsepower:

– Convert the required torque to horsepower by dividing it by the motor speed (in RPM) and multiplying by a conversion factor.

6. Consider Safety Factors and Efficiency:

– Apply safety factors to the calculated horsepower to account for variations, contingencies, and future growth.

– Consider the efficiency of the drive system, including the motor, gearbox, and other transmission components, to ensure accurate power transmission.

It’s important to note that the above calculation method provides an estimate of the required horsepower. Consulting with conveyor system manufacturers, engineers, or industry-specific guidelines is recommended for precise calculations and to ensure the selected conveyor chain drive meets the application requirements.

conveyor

What are the advantages of using a plastic conveyor chain?

Plastic conveyor chains offer several advantages over traditional metal chains. Here are some of the key advantages:

1. Corrosion Resistance: Plastic chains are highly resistant to corrosion, making them ideal for applications in humid or corrosive environments. They do not rust or deteriorate when exposed to moisture or chemicals.

2. Lightweight: Plastic chains are significantly lighter than metal chains, making them easier to handle and install. Their lightweight nature reduces the overall weight of the conveyor system and can result in energy savings during operation.

3. Low Noise Operation: Plastic chains generate less noise compared to metal chains, leading to a quieter working environment. This can be particularly beneficial in industries where noise reduction is important, such as food processing or packaging.

4. Reduced Friction and Wear: Plastic chains have self-lubricating properties, which reduce friction and wear. This results in lower maintenance requirements and longer chain life. The smooth surface of plastic chains also minimizes the risk of product damage during transportation.

5. Flexibility and Modularity: Plastic chains can be easily customized and designed to fit specific conveyor system requirements. They offer flexibility in terms of length, width, and configuration. Additionally, plastic chains are often modular, allowing for easy replacement of damaged or worn-out sections without replacing the entire chain.

6. Cost-Effective: Plastic conveyor chains are generally more cost-effective compared to metal chains. They are often less expensive to manufacture and offer a longer lifespan with minimal maintenance requirements, resulting in lower overall costs.

7. Chemical Resistance: Plastic chains are resistant to a wide range of chemicals, making them suitable for applications where exposure to aggressive substances is a concern. They can withstand contact with oils, acids, alkalis, and various cleaning agents.

Overall, the advantages of using a plastic conveyor chain include corrosion resistance, lightweight design, low noise operation, reduced friction and wear, flexibility, cost-effectiveness, and chemical resistance. These benefits make plastic chains a popular choice in various industries, including food processing, packaging, pharmaceuticals, and logistics.

conveyor

Can a conveyor chain be used in high-temperature environments?

Yes, conveyor chains can be designed and used in high-temperature environments, but it depends on the specific type of chain and the temperature range involved. Here are some key considerations:

  • Material Selection: Conveyor chains for high-temperature applications are typically made from heat-resistant materials such as stainless steel or alloy steels that can withstand elevated temperatures without significant degradation.
  • Lubrication: Proper lubrication is essential in high-temperature environments to minimize friction and wear. Special high-temperature lubricants are available that can withstand the operating temperatures and provide effective chain lubrication.
  • Chain Design: Chains used in high-temperature environments may have specific design features to accommodate thermal expansion and minimize the risk of binding or seizing. These can include increased clearances, special joint designs, or heat-resistant coatings.
  • Temperature Limitations: Each conveyor chain has a maximum temperature limit specified by the manufacturer. It is important to consider this limit and ensure that the operating temperature does not exceed it to maintain the integrity and performance of the chain.
  • Proper Maintenance: Regular inspection and maintenance are crucial in high-temperature applications. This includes monitoring chain wear, lubrication levels, and any signs of heat-induced damage or degradation.

However, it is important to note that the suitability of a conveyor chain for high-temperature environments ultimately depends on the specific operating conditions, including the temperature range, duration of exposure, and the application requirements. It is recommended to consult with the chain manufacturer or an experienced engineer to select the appropriate chain and ensure its safe and reliable operation in high-temperature environments.

China OEM Plastic/POM/Steel 83mm Conveyor Flexible Scraper Chain for Conveying Battery Bottle Package  China OEM Plastic/POM/Steel 83mm Conveyor Flexible Scraper Chain for Conveying Battery Bottle Package
editor by CX 2024-05-08

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