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Modelling the radially polarised annular stator of a piezoelectric travelling wave ultrasonic motor based on the shear effect

机译:基于剪切效应的压电行波超声电机径向极化环形定子建模

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This article deals with the mathematical-analytical model of a radially polarised stator, part of a piezoelectric travelling wave ultrasonic motor based on the shear effect. The stator is treated with a Reissner-Mindlin plate model containing piezoelectric terms. The so-obtained mathematical description of the disc stator takes into account its geometry, kinematics and characteristics that influence efficiency and torque. Rayleigh-Ritz discretisation is used to obtain eigenfrequencies and eigenmodes of the stator plate. In addition, there are often teeth over the contact surface of ring-shaped stators to minimise the friction losses during operation of the motor, and possible vibration modes are compared with respect to the deflexion of the contact points. In the laboratory, measured eigenfrequencies of the free vibrations of the plate corroborate the numerical method. Particularly, the generation of travelling waves requests the excitation of two degenerated vibration modes in a certain electrode configuration. A voltage inverter was designed for this purpose.
机译:本文讨论了径向极化定子的数学分析模型,该定子是基于剪切效应的压电行波超声电机的一部分。用包含压电项的Reissner-Mindlin平板模型处理定子。如此获得的圆盘定子的数学描述考虑了其几何形状,运动学和影响效率和扭矩的特性。 Rayleigh-Ritz离散化用于获得定子板的本征频率和本征模。另外,在环形定子的接触表面上经常有齿,以使电动机运行期间的摩擦损失最小,并且就接触点的挠度比较了可能的振动模式。在实验室中,测得的板自由振动的本征频率证实了数值方法的正确性。特别地,行波的产生要求在特定的电极配置中激发两个退化的振动模式。为此设计了电压逆变器。

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