基于定子齿面响应特性的超声电机定子材料优化及槽倾角设计

Fang Hu, Shouqing Huang, W. Dai, Taichun Qin, Fangyong Li, Chen Yu
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引用次数: 0

摘要

对于行波超声电机来说,定子与转子之间的接触传递是一个非常重要的动力传递过程,它决定了电机的最终输出特性。基于定子齿面各位置的均匀动力响应有助于保证定子摩擦片与转子的紧密接触和高效运行的思想,本文提出以定子齿面外圈与内圈的幅值比为优化设计目标,对定子材料进行优化,对齿槽倾角进行优化设计。在有限元模型中,建立了包含转子组件的精细几何模型,考虑了预压力对超声电机振动特性的影响以及定子摩擦片材料与转子的接触模型。基于workbench软件的仿真结果表明,TC11材料在三种候选材料中齿面动态响应均匀性较好,且齿槽倾角约为4°时齿面动态响应均匀性最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of stator material and design of slot inclination angle of ultrasonic motors based on response characteristics of stator tooth surface
For traveling wave ultrasonic motor, the contact transmission between stator and rotor is a very important power transmission process, which determines the final output characteristics of the motor. Based on the idea that the uniform dynamic response at each position of the stator tooth surface helps to ensure the close contact between the stator friction plate and the rotor and the efficient operation, this paper proposes that the amplitude ratio of the outer ring and inner ring of the stator tooth surface is taken as the optimization design objective to optimize the stator material and optimize the design of the tooth slot inclination angle. In the finite element model, a refined geometric model including rotor assembly is established, and the influence of pre-pressure on the vibration characteristics of ultrasonic motor and the contact model between stator friction plate material and rotor are considered. The simulation results based on workbench software show that TC11 material has better uniformity of dynamic response of tooth surface among the three candidate materials, and the uniformity of dynamic response on tooth surface is the best when the inclination angle of tooth slot is about 4°.
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