圆楔波超声电机结构动力学分析

Tai-Ho Yu
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引用次数: 0

摘要

为了确定超声电机的最佳设计参数,对楔形圆波导驱动超声电机的结构动力学进行了分析。电机定子包括金属圆楔和压电圆柱管。压电圆柱管外表面涂覆梳状电极,其表面均匀分布的电极形成两个梳状换能器。自行设计的高性能双相驱动电路沿楔形峰值启动弯曲波,改变驱动电压和相位,从而可以精确控制电机旋转的速度和方向。本研究使用有限元软件对电机的谐振频率和动力学进行了分析。然后利用谐波分析和仿真结果推导出电机设计的最佳参数。结果表明,该超声电机工作频率为33.8 kHz,工作电压为±100V。两对双相梳型电极产生五个沿楔形峰顺时针或逆时针方向传播的弯曲波。定子和转子之间的接触点位于楔形峰值下方约1mm处,以确保电机的最佳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of structural dynamics for a circular wedge-wave ultrasonic motor
This study analyzes the structural dynamics of an ultrasonic motor driven by a circular wedge acoustic waveguide in order to determine the optimal motor design parameters. The motor stator comprises a metal circular wedge and piezoelectric cylindrical tube. The outer surface of the piezoelectric cylindrical tube is coated with comb-type electrodes, and equispaced electrodes on its surface formed two comb-type transducers. A self-designed high-performance dual-phase driver circuit initiated flexural waves along the wedge peak, changing the driving voltage and phases, which allows for the speed and direction of motor rotation to be controlled accurately. This study uses finite element software to analyze the resonant frequencies and dynamics of the motor. Harmonic analysis and simulation results are then used to derive optimal parameters for motor design. The results indicate that the ultrasonic motor has an operating frequency of 33.8 kHz and operating voltage of ±100V. Two pairs of dual-phase comb-type electrodes generate five flexural waves that transmitted along the wedge peak in a clockwise or counterclockwise direction. The point of contact between the stator and rotor is located approximately 1 mm underneath the wedge peak in order to ensure the motor's optimal performance.
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