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Operational verification of a new disc-type ultrasonic motor by finite element simulations

机译:新型圆盘式超声电机的有限元模拟运行验证

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In this paper, a 3-D mechanical element with an extra electrical degree of freedom is employed to simulate the dynamic vibration modes of the linear piezoelectric, mechanical and piezoelectro-mechanic behaviours of a metal disc structure embedded with a piezoelectric actuator. In piezoelectric finite element formulation, a discretized equation of motion is developed and solved by using the integration scheme to explain why an adaptive boundary condition, a simple support condition with three non-equal-triangular (120/spl deg/-90/spl deg/-150/spl deg/) fixed points near the edge for the mechanical design of a new disc-type piezoelectric ultrasonic stator, is defined so that a lateral elliptical motion of the contact point between stator and rotor can be realized for driving the rotor. It starts from eight-node hexahedral elements with displacement and electric potential as the nodal d.o.f.s model and uses Guyan reduction and Householder-Bisection inverse iteration to find the modal frequencies and associated mode shapes. Some other important factors affecting the behaviour of this motor are also studied, including structure design, amplitude of input voltage, exciting frequency, and contact phenomena.
机译:在本文中,采用具有额外电自由度的3-D机械元件来模拟嵌入压电致动器的金属盘结构的线性压电,机械和压电机械行为的动态振动模式。在压电有限元公式中,使用积分方案来开发和求解离散运动方程,以解释为什么自适应边界条件,具有三个非等三角形(120 / spl deg / -90 / spl deg的简单支撑条件) (-150 / spl deg /)边缘附近的固定点,用于新型圆盘型压电超声定子的机械设计,这样可以实现定子和转子之间接触点的横向椭圆运动来驱动转子。它从具有位移和电势的八节点六面体元素作为节点d.f.s模型开始,并使用Guyan约简和Householder-Bisection逆迭代来找到模态频率和相关的模态形状。还研究了影响电动机性能的其他一些重要因素,包括结构设计,输入电压幅度,励磁频率和接触现象。

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