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Analysis of a novel longitudinal-bending hybrid ultrasonic motor using vibration coupling

机译:基于振动耦合的新型纵向弯曲混合超声电机的分析

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A novel longitudinal-bending (L-B) hybrid ultrasonic motor using vibration coupling is proposed. Different with the previous L-B ultrasonic motors, only longitudinal PZT plates are used; and the longitudinal-bending hybrid vibrations of the motor are excited synchronously. Fixed boundary condition is applied on one side surface of the flange, which locates at the wave node of a longitudinal transducer. The working principle of the motor is analyzed. By using finite element method, comparison between the proposed ultrasonic motor with fixed boundary condition and a transducer with free boundary condition are developed by modal analysis, harmonic analysis and transient analysis. It is found that the longitudinal-bending hybrid vibrations can be produced by the longitudinal piezoelectric elements under a fixed boundary condition of the flange. It should be noted that the bending vibration is not generated by the bending piezoelectric elements, but excited by a vibration coupling effect under an unsymmetrical boundary condition. The change of the boundary condition also shows minute effects on the resonance frequency and the electromechanical coupling factor. Oblique elliptical movements are formed on the two end tips of the transducer. These motions can push the runners linearly by frictional forces if preloads are applied.
机译:提出了一种利用振动耦合的新型纵向弯曲(L-B)混合超声电动机。与以前的L-B超声波马达不同,仅使用纵向PZT板;电机的纵向弯曲混合振动被同步激励。固定边界条件施加在法兰的一侧表面上,该侧表面位于纵向换能器的波节点处。分析了电动机的工作原理。通过有限元方法,通过模态分析,谐波分析和瞬态分析,对所提出的固定边界条件的超声波电动机与自由边界条件的传感器进行了比较。已经发现,在凸缘的固定边界条件下,纵向压电元件可以产生纵向弯曲的混合振动。应该注意的是,弯曲振动不是由弯曲的压电元件产生的,而是在非对称边界条件下由振动耦合效应激发的。边界条件的变化还显示出对谐振频率和机电耦合因子的微小影响。倾斜的椭圆运动在换能器的两个末端上形成。如果施加预紧力,这些运动可以通过摩擦力线性推动跑步者。

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