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非接触供电旋转超声加工系统负载特性研究

朱学明 杨兰旗 刘礼平 李占杰 雍华山

宇航材料工艺2024,Vol.54Issue(3):88-97,10.
宇航材料工艺2024,Vol.54Issue(3):88-97,10.DOI:10.12044/j.issn.1007-2330.2024.03.012

非接触供电旋转超声加工系统负载特性研究

Research on Load Characteristics of Rotary Ultrasonic Machining System With Contactless Power Supply

朱学明 1杨兰旗 1刘礼平 2李占杰 1雍华山3

作者信息

  • 1. 天津职业技术师范大学机械工程学院,天津 300222
  • 2. 中国民航大学航空工程学院,天津 300300
  • 3. 天津九鹏汽车装备技术有限公司,天津 300399
  • 折叠

摘要

Abstract

In the process of rotary ultrasonic machining,the change of load will cause amplitude attenuation,which will lead to the decrease of machining accuracy and efficiency.In this paper,in order to solve the problem of amplitude attenuation in the machining process of the rotary ultrasonic machining system with non-contact power supply,the influence of load on the electrical parameters of ultrasonic oscillator is obtained through static loading experiment.On the basis of the static loading experiment,the loading experiment of the non-contact energy transmission system of ultrasonic oscillator is carried out,and the effect of load on energy transmission characteristics is obtained.The results show that the electrical parameters of the ultrasonic oscillator are changed by the combined influence of the load force,the direction of the load force and the characteristics of the machined materials.Change of the electrical parameters of the ultrasonic oscillator leads to the change of the output power of the ultrasonic system with non-contact power supply,which leads to the problem of amplitude attenuation.In this paper,the circuit compensation method of main side series capacitor and secondary side parallel capacitor is adopted to reduce the amplitude attenuation.The research results of this paper provide an experimental basis for solving the problem of amplitude attenuation.

关键词

超声波加工/非接触能量传输/振幅衰减/电学参数/能量传输特性

Key words

Ultrasonic machining/Non-contact energy transmission/Amplitude attenuation/Electrical parameters/Energy transmission characteristics

分类

信息技术与安全科学

引用本文复制引用

朱学明,杨兰旗,刘礼平,李占杰,雍华山..非接触供电旋转超声加工系统负载特性研究[J].宇航材料工艺,2024,54(3):88-97,10.

基金项目

天津市教委科研计划项目(2022KJ127) (2022KJ127)

宇航材料工艺

OA北大核心CSTPCD

1007-2330

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