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Modal separation of circular cylindrical wedge wave ultrasonic motors

机译:圆柱楔形波超声波电动机的模态分离

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This paper presents an effort to improve the performance of wedge-wave ultrasonic motors (WW-USM) driven by circumferentially traveling flexural waves. In general, USM is operated in the vicinity of the resonant frequency of a specific vibration mode, which needs to be well separated from the resonant frequencies of other modes. In the current prototype, unexpected disturbance induced at the instant of switching on/off or changing direction of the motor were found through both simulation and measurement. The fluctuations are attributed to the vibration modes other than driving mode occurring around the operating frequency. The simulated results indicate the excellent modal separation has been achieved if the upper base height under the piezoelectric tube was appropriately selected. The experimental results show that the transient response of revolution speed is quicker and more stable in new design. The rotary torque becomes twice when the unexpected modes are suppressed from excitation of the WW-USM.
机译:本文提出了一种努力,以改善由周向传播的弯曲波驱动的楔形波超声波电动机(WW-USM)的性能。通常,USM在特定振动模式的共振频率附近工作,该振动必须与其他模式的共振频率很好地分开。在当前的原型中,通过仿真和测量都发现了在电动机开/关或改变方向时产生的意外干扰。该波动归因于在工作频率附近发生的除了驱动模式之外的振动模式。模拟的结果表明,如果在压电管下的上基座高度适当地选择已经取得优异的模态的分离。实验结果表明,新设计的转速瞬态响应更快,更稳定。当从WW-USM的励磁中抑制了意外模式时,旋转转矩变成两倍。

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