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Rotation angle analyses of plate ultrasonic motor under dual-mode coupling drive

机译:双模耦合驱动下平板超声电机的旋转角分析

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Speed improvements of plate ultrasonic motors could be achieved by choosing suitable excitation frequencies; however, the combination of these two frequencies is hard to be determined. Based on the linear superposition of vibrations at two independent mode frequencies, the rotation angles and amplitudes of modal vibrations are proposed to select the possible dual-frequency excitation combinations in this paper. Experimental prototype is a plate ultrasonic motor using single-phase asymmetric excitation, which can work under a single vibration or multiple vibration modes. The speed characteristics of prototype driven by dual-mode coupling are used to verify the coupling effects of dual-mode drive, in which each rotation angle of two modal vibrations is not close to vertical phase, and the two modal vibrations with larger amplitudes and closer rotation angles could improve the rotation speed of motor.
机译:选择合适的激励频率可以提高平板超声电机的速度。但是,这两个频率的组合很难确定。基于两个独立模态频率的线性振动叠加,提出了模态振动的旋转角度和振幅,以选择可能的双频激励组合。实验原型是使用单相非对称激励的板式超声电动机,该电动机可以在单个振动或多个振动模式下工作。利用双模耦合驱动样机的速度特性来验证双模驱动的耦合效果,其中两个模态振动的每个旋转角都不接近垂直相位,并且两个模态振动的振幅更大且更接近旋转角度可以提高电动机的转速。

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