China Good quality Permanent Magnetic Pulley for Conveyor Belt in Recycling Quarrying Industries with Best Sales

Product Description

 

Magnetic belt conveyor drum pulley would supply you with more magnets of what you want for greater attracting power and holding power, keeping harmful, dangerous ferrous particles out of your processing system or redeeming valuable ferrites from other substances.

      Application:

  • Waste recovery
  • Mining
  • Recycling Applications
  • Cement
  • Coal Handling Plant
  • Refractory
  • Minerals

 

Specifications:

Modle No. Drum Specs Suitable Belt width Magnetic Intensity Bearing Type   Allowable Torques KN.m Wheight
Dia(mm) Length(mm) mm Gs  dayside  rubber Kg
CT56 500 600 500 simple:
 1500~2500   
special: 
2500~4500
1312 1.63 2.5 380
CT57 500 750 650 1316 2.12 3.26 580
CT59 500 950 800 1316 2.62 4.01 765
CT66 630 600 500 1316 3.67 5.61 750
CT67 630 750 650 1316 2.96 4.54 800
CT69 630 950 800 22220 3.67 5.61 1090
CT611 630 1150 1000 22220 4.57 7.01 1285
CT89 800 950 800 22220 5.59 8.55 1480
CT811 800 1150 1000 22224 6.96 10.68 1865

 

More Information About CHINAMFG Magnet

This was in 2004, when our founder, Mr. Wang, first used magnetism knowledge to make research and designed the first set eccentric pole eddy current separator in China. Thus we are fully aware of this responsibility in sorting resources field for nonferrous metal.

In the year 2006, with 25 years of magnetic experience, CHINAMFG Magnet was Established. Keeping improvement for all kinds of magnetic separators, to provide high-quality and high-performance products is our own responsibility, moreover, offering the best solution and the most effective service is 1 of the higher-standard targets we are pursuing. CHINAMFG has a strict quality control system for raw materials inspection, producing quality inspection, and machine testing.

With 4 members team, in the beginning, CHINAMFG has grown through continuous product innovation and CHINAMFG expansion to over 5000 square feet of manufacturing space and more than 100 employees.

The main products eddy current separators, magnetic separators, sensor sorters and AI technology machines for recycling industries had been exported to more than 50 countries.

Materials testing and machines OEM could be available for better solutions for metal recycling, plastic, glass cullet, construction waste, incineration bottom ash, Aluminum, and E-waste recycling. Also for food, chemical, and lithium battery industries.

Ejet after-sales service promises that within 15 minutes we will make a response to the customer. On the condition that some problems cannot be solved by calls or call videos, engineers are available to serve overseas.

Each Perfect Separation is EJET’s commitment to you! We constantly pay attention to your separation result.

Ejet had been focused on magnetic separator design, and manufacturing for more than 17 years with rich experience. CHINAMFG has been dealing with the construction of machines for bulk material handling.

Ejet  is a One-stop Source for Recycling Equipment used in Material Recovery Facilities, conveyors, Screening, and Magnetic Technology for all kinds of industry fields: Automotive Shredder Residue (ASR). Municipal CHINAMFG Waste. Incineration Bottom Ash. Mining Magnet.


 

17 YEARS FOCUS ON MAGNETIC SEPARATOR

Ejet had been in this field for 17 years since 2006. We are the leading manufacturer in Asia. with rich experience.

We had very good cooperation with famous universities, such as ZheJiang Jiaotong University, ZheJiang second technology University, Northeast University and scientific establishments.

 

20% ENGINEERS IN CHINAMFG OBTAIN MORE AND MORE NATIONAL PATENT

Engineers are accounted 20% of the total people in Ejet, the stable team keeps developing and perfect quality.

 

30 YEARS EXPERIENCE OF IN MACHINE DESIGNING

Some engineers had more than 30 years experience with magnetic separators and eddy current separators, we were the leading engineer for eddy current separators in China. Products are widely used in the recycling and mining industries.

 

3000 SETS PRODUCTS HAD BEEN MANUFACTURED

The products are widely used in mining, plastic recycling, metal recycling and E-waste recycling. And had been exported to more than 40 countries.

 

24 HOURS AFTER-SALES SERVICE

The contract is not the beginning of the cooperation, CHINAMFG worries about what customers worry about. Customer service is 24 hours online.

And we had a spare parts store for each customer.

 

 


 

 

1.  Q: What kind of metal is the eddy current separator applied to?

A: Eddy Current Separator suitable for aluminum, copper, and brass.etc non-ferrous scraps separation from non-metal materials of size >3mm.

 

2.  Q: Which type should I use for my recycling plant?

A: In order to recommend the most suitable model, please let us know the material`s situation .including the composition, size, handling capacity and expected separation result.

 

3.  Q. What is the MOQ of your machine?

A: Our MOQ is 1 set

 

4.  Q: What are the pros and cons of a concentric pole rotor compared with and eccentric rotor design?

A: The eccentric type is much more suitable for the complicated material situation, The eccentric rotor design reduces long-term wear due to heated ferrous build up, and can effectively avoid the device damage caused by impurity ferrous metal.
Exclusive the ferrous influence, the concentric type has a little bit better separation effect but must make sure no ferrous exist.

 

5.  Q. How long is the machine warranty period?

A: the product warranty period is 12 months

For details, or for longer the machine Warranty Period.

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After-sales Service: 1 Years
Warranty: 1 Years
Type: Metal Recycling
Automation: Automatic
Certification: ISO, CE, CE
Manufacturing Process: Forging
Samples:
US$ 650/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

sheave pulley

How does the configuration of a compound pulley affect its lifting capacity?

The configuration of a compound pulley has a direct impact on its lifting capacity. Here is a detailed explanation of how the configuration of a compound pulley affects its lifting capacity:

1. Number of Pulleys: The number of pulleys in a compound pulley system affects its lifting capacity. In a compound pulley system, the more pulleys that are used, the greater the mechanical advantage and lifting capacity. Each additional pulley increases the number of line segments supporting the load, distributing the weight and reducing the force required to lift the load. Therefore, a compound pulley system with more pulleys will have a higher lifting capacity compared to a system with fewer pulleys.

2. Arrangement of Pulleys: The arrangement of pulleys in a compound pulley system also impacts its lifting capacity. Compound pulleys can be configured in various arrangements, such as the “block and tackle” configuration or the “differential” configuration. These different arrangements determine how the pulleys are connected and how the load is distributed. The specific arrangement can affect the mechanical advantage and lifting capacity of the system. For example, a block and tackle configuration, where multiple movable pulleys are connected to a fixed pulley, can provide a higher mechanical advantage and lifting capacity compared to a simple system with a single movable pulley.

3. Ratio of Fixed to Movable Pulleys: The ratio of fixed to movable pulleys in a compound pulley system affects its lifting capacity. The presence of fixed pulleys in the system changes the direction of the force applied, contributing to the mechanical advantage. The ratio of fixed to movable pulleys determines the division of load and the amplification of force. As the number of movable pulleys increases relative to the fixed pulleys, the mechanical advantage and lifting capacity of the system also increase. Therefore, a compound pulley system with a higher ratio of movable to fixed pulleys will have a greater lifting capacity.

4. Efficiency and Friction: The efficiency of a compound pulley system and the amount of friction present can also impact its lifting capacity. Friction in the pulley system can reduce the effectiveness of the mechanical advantage and increase the force required to lift the load. Factors such as the quality of the pulleys, the condition of the ropes or cables, and proper lubrication can influence the efficiency and minimize friction. A well-maintained and properly lubricated compound pulley system will have a higher lifting capacity compared to a system with high friction and reduced efficiency.

5. Load Distribution: The way the load is distributed across the line segments in a compound pulley system affects its lifting capacity. The load should be evenly distributed among the line segments to ensure that each segment is sharing the weight. If the load is unevenly distributed or concentrated on one line segment, it can exceed the weight capacity of that particular segment, potentially leading to failure of the pulley system. Proper load distribution and balance are important for maximizing the lifting capacity and ensuring the safe operation of the compound pulley system.

In summary, the lifting capacity of a compound pulley is influenced by the number of pulleys, the arrangement of pulleys, the ratio of fixed to movable pulleys, the efficiency and friction of the system, and the proper distribution of the load. Understanding and optimizing these factors are crucial for determining the lifting capacity of a compound pulley system and ensuring its safe and efficient operation.

sheave pulley

What is the significance of proper alignment and tensioning in compound pulley systems?

Proper alignment and tensioning are of utmost significance in compound pulley systems as they directly affect the performance, efficiency, and safety of the system. When compound pulleys are correctly aligned and appropriately tensioned, several benefits are realized. Here is a detailed explanation of the significance of proper alignment and tensioning in compound pulley systems:

  1. Optimal Mechanical Advantage: Proper alignment and tensioning ensure that the compound pulley system operates at its maximum mechanical advantage. The mechanical advantage is the ratio between the load being lifted and the force applied to the rope or cable. When the pulleys are aligned correctly and the tension is properly adjusted, the load is distributed evenly among the multiple lines of support, resulting in efficient force distribution and increased lifting capacity.
  2. Efficient Power Transfer: Correct alignment and tensioning minimize energy losses and enhance power transfer within the compound pulley system. When the pulleys are aligned, the ropes or cables move smoothly over the sheaves, reducing frictional losses. Proper tensioning ensures that the ropes or cables are neither too loose nor too tight, optimizing the power transfer from the input force to the load being lifted. This efficient power transfer results in improved system performance and reduced energy consumption.
  3. Prevention of Excessive Wear and Damage: Improper alignment and tensioning can cause excessive wear and damage to the components of the compound pulley system. Misalignment can lead to uneven loading on the ropes or cables, causing them to rub against the sheaves or other parts of the system. This friction can result in accelerated wear, deformation, or even failure of the ropes, cables, sheaves, or bearings. Proper alignment and tensioning help distribute the load evenly, minimizing wear and extending the lifespan of the system components.
  4. Reduction of Stress and Fatigue: Correct alignment and tensioning reduce stress and fatigue on the ropes or cables, as well as on the pulley system itself. When the ropes or cables are properly tensioned, they experience less strain during the lifting or lowering process. This reduces the risk of overloading and premature failure of the ropes or cables. Additionally, proper alignment ensures that the forces are evenly distributed, preventing excessive stress on individual components of the pulley system and promoting its longevity.
  5. Enhanced Safety: Proper alignment and tensioning contribute to the overall safety of the compound pulley system. Misalignment or improper tensioning can lead to unexpected movements, jerks, or loss of control during lifting operations. This can pose a significant safety hazard to operators and bystanders. By ensuring proper alignment and tensioning, the system operates smoothly, minimizing the risk of accidents, injuries, and damage to property.

In summary, proper alignment and tensioning are crucial for the optimal performance, efficiency, and safety of compound pulley systems. They enable the system to operate at its maximum mechanical advantage, facilitate efficient power transfer, prevent excessive wear and damage, reduce stress and fatigue, and enhance overall safety. Regular inspection and maintenance should be carried out to ensure that compound pulley systems remain properly aligned and tensioned throughout their lifespan.

sheave pulley

What is a compound pulley, and how does it function in mechanical systems?

A compound pulley is a type of pulley system that consists of multiple fixed and movable pulleys working together to provide mechanical advantage in lifting or moving heavy loads. Here is a detailed explanation of what a compound pulley is and how it functions in mechanical systems:

A compound pulley is composed of two or more pulleys, which are connected by a continuous loop of rope, cable, or belt. The pulleys are arranged in such a way that some are fixed to a support structure, while others are movable. The rope or cable wraps around the pulleys, creating multiple line segments that support the load.

The primary function of a compound pulley is to multiply the force applied to the rope or cable, allowing the user to lift or move heavy loads with less effort. This mechanical advantage is achieved through the distribution of the load’s weight across multiple line segments and the reduction of the force required to lift the load.

When a force is applied to the free end of the rope or cable, the movable pulleys in the compound pulley system move in response. As the movable pulleys move, the length of rope or cable on one side of the pulley system decreases while the length on the other side increases. This movement causes the load to be lifted or moved.

The mechanical advantage provided by a compound pulley is determined by the number of line segments supporting the load. Each additional segment of rope or cable increases the mechanical advantage of the system. For example, a compound pulley with three line segments supporting the load provides a mechanical advantage of three, meaning the force applied to the rope or cable is multiplied by three.

Compound pulleys are commonly used in various mechanical systems, including cranes, hoists, elevators, and block and tackle systems. They are particularly useful in situations where heavy loads need to be lifted or moved with reduced effort or where space constraints make it challenging to incorporate larger, single-pulley systems.

It is important to note that while compound pulleys can provide mechanical advantage, they also introduce some trade-offs. As the mechanical advantage increases, the distance through which the rope or cable needs to be pulled also increases. Additionally, compound pulley systems may introduce some friction and inefficiency, requiring regular maintenance and lubrication to ensure smooth operation.

In conclusion, a compound pulley is a pulley system that utilizes multiple fixed and movable pulleys to provide mechanical advantage in lifting or moving heavy loads. By distributing the load across multiple line segments, compound pulleys reduce the force required to lift the load, making them valuable components in various mechanical systems.

China Good quality Permanent Magnetic Pulley for Conveyor Belt in Recycling Quarrying Industries   with Best Sales China Good quality Permanent Magnetic Pulley for Conveyor Belt in Recycling Quarrying Industries   with Best Sales
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