The necessity of high precision and intelligence of dual station automatic positioning dynamic balancing machine
Application scope of dual station automatic positioning dynamic balancing machine: mainly used for rotor balance measurement and calibration of rotor and end face weighting.
Features: The automatic positioning dynamic balancing machine adopts our electrical measurement system, with diverse measurement methods including dynamic and static balancing, up to 10 support methods, and flexible customization for adding and removing weights and forward and reverse rotation. High measurement accuracy, using multiple calibration coefficient combinations, automatically adjusting system sensitivity, shifting without jumping, dual filtering of software and hardware, data compression, more stable, accurate, and faster measurement.
Dynamic balancing is a fundamental common problem that must be solved in the production and manufacturing process of rotating products. Its quality directly determines the working performance and service life of the product, and has a huge impact on the quality of the product. In industries such as automobiles and power tools, the development of high-speed and lightweight motors has led to increasingly high requirements for vibration, noise, and other performance of such products. Correspondingly, motor rotors have also put forward more stringent requirements for dynamic balancing technology.
At present, most domestic motor manufacturers have used automatic positioning dynamic balancing machines for rotor dynamic balancing, while a small number of factories still use traditional machines. Manually finding angles not only results in low production efficiency and poor calibration quality, but also causes significant damage to the rotor. However, the weight deviation caused by the operator's experience can reach 10%~50%, which weakens the electrical performance of the rotor and leads to motor performance degradation, which cannot meet the needs of producing motors. Therefore, it is very necessary to produce high-precision and intelligent dynamic balancing machines.
Application scope of dual station automatic positioning dynamic balancing machine: mainly used for rotor balance measurement and calibration of rotor and end face weighting.
Features: The automatic positioning dynamic balancing machine adopts our electrical measurement system, with diverse measurement methods including dynamic and static balancing, up to 10 support methods, and flexible customization for adding and removing weights and forward and reverse rotation. High measurement accuracy, using multiple calibration coefficient combinations, automatically adjusting system sensitivity, shifting without jumping, dual filtering of software and hardware, data compression, more stable, accurate, and faster measurement.
Dynamic balancing is a fundamental common problem that must be solved in the production and manufacturing process of rotating products. Its quality directly determines the working performance and service life of the product, and has a huge impact on the quality of the product. In industries such as automobiles and power tools, the development of high-speed and lightweight motors has led to increasingly high requirements for vibration, noise, and other performance of such products. Correspondingly, motor rotors have also put forward more stringent requirements for dynamic balancing technology.
At present, most domestic motor manufacturers have used automatic positioning dynamic balancing machines for rotor dynamic balancing, while a small number of factories still use traditional machines. Manually finding angles not only results in low production efficiency and poor calibration quality, but also causes significant damage to the rotor. However, the weight deviation caused by the operator's experience can reach 10%~50%, which weakens the electrical performance of the rotor and leads to motor performance degradation, which cannot meet the needs of producing motors. Therefore, it is very necessary to produce high-precision and intelligent dynamic balancing machines.
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