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Professionally provides dynamic balance detection, correction and dynamic balance cleaning equipment for all types of high speed rotating workpieces (from 500 to 10,000 rpm)

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Comparison of the use of different measuring methods of dynamic balancing machine

Comparison of the use of different measuring methods of dynamic balancing machine

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[Abstract]:
The dynamic balancing machine is a high-precision centrifugal force measuring device. The dynamic balancing machine system involves many fields such as machinery, electronics, dynamics, and computers. It is widely used in modern rotor production. The rotor dynamic balancing machine is a high-precision centrifugal force measurement device. It has many advantages such as high intelligence, flexible application, safety and reliability, simple operation, convenient modular design and maintenance, etc.

The dynamic balancing machine is a high-precision centrifugal force measuring device. The dynamic balancing machine system involves many fields such as machinery, electronics, dynamics, and computers. It is widely used in modern rotor production. The rotor dynamic balancing machine is a high-precision centrifugal force measurement device. It has many advantages such as high intelligence, flexible application, safety and reliability, simple operation, convenient modular design and maintenance, etc. It is widely used in rotor manufacturing and is a modern rotor quality. The key equipment for upgrading is of great significance for improving the quality of rotor production and the market competitiveness of products.

Dynamic balancing machine During the measurement of rotating objects (rotor), due to the different products produced by the company, the measurement method of the dynamic balancing machine chosen by it is also very different. The balancing machine can be divided into: ring driven balancing machine, self-driving balancing machine, universal joint balancing machine according to the different measurement methods. Zhuo Xuanjin, a well-known domestic dynamic balancing machine manufacturer, compares the use of different measuring methods of the balancing machine. I hope it will be helpful to everyone when choosing a dynamic balancing machine.

 


 


1. Circle drive balancing machine
Main function: The rubber endless belt or silk endless belt is used to drive the rotor by the motor pulley. Therefore, the ring belt drag requires that the rotor surface must have a smooth cylindrical surface, and the measurement efficiency is high. The ring-driven balancing machine is suitable for the measurement of motor rotors, power tools, machine tool spindles, ventilation equipment, etc.

Advantages: It does not affect the unbalance of the rotor, and the balance accuracy is high;


 



2. Self-driven dynamic balancing machine
Main function: It uses the rotor's own power to rotate. Self-driving is the drag method that has the least impact on the balance accuracy, and the balance accuracy can reach the highest, but only the special rotor allowed by the structure can use this drag method.

Advantage: The highest measurement accuracy;

 



 


3. Universal joint balancing machine
Main function: use universal joint to connect the balancer main shaft and rotor. The characteristics of coupling dragging are suitable for rotors with irregular appearance, which can transmit large torque, and suitable for dragging rotors with large wind resistance such as fans.

Advantages: large torque transmission and strong versatility;

Summary, the dynamic balancing machine can effectively improve product quality and market competitiveness of enterprises, and has a high degree of intelligence and other advantages. Different measuring methods of dynamic balancing machines can be chosen by different enterprises. In this regard, Zhuo Xuanjin said: As a key technology for modern rotor centrifugal force correction, dynamic balancing machine vigorously develops and improves dynamic balancing machine technology, which helps to improve the degree of production automation and improve the production efficiency of enterprises.

 

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