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DYNAMIC MODELLING OF A TRAVELING-WAVE TYPE ULTRASONIC MOTOR WITH BEAM TEETH VIA FINITE ELEMENTS

机译:通过有限元带梁齿行走波型超声波电动机的动态建模

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The study is dedicated to establish the dynamic model of a traveling-wave type ultrasonic motor (USM) with beam teeth via finite elements. The modeling is accomplished mainly by finite elements, the task of which consists of three parts - for stator, rotor and contact. It is first assumed that the complex dynamics of the stator emulates a single one-dimensional Euler-beam vibrating harmonically in the transverse direction. On the top surfaces of the stator are vertical beam teeth that is in contact with rotor, which is simply a thin disk fixed to spindle. The friction between the teeth tips and stator rotates the spindle moves the stator and finally rotates the disk to the desired speed. A contact model between beam tips and rotor disk with proper friction assumed is next built in conjunction with the established finite element model of the rotor disk. With a complete model in hands, the dynamics of the USM is predicted along with associated exerted torques. Experiments are finally conducted for collecting sets of data of rotation speeds versus torques that validate the effectiveness of the built models for the motor, stator and contact force.
机译:该研究专用于通过有限元元件建立带梁齿的行波式超声波电动机(USM)的动态模型。该建模主要是由有限元完成的,其任务由三个部分组成 - 定子,转子和接触。首先假设定子的复杂动态仿真在横向方向上谐振的单一一维欧拉梁。在定子的顶表面上是与转子接触的垂直梁齿,这只是固定到主轴的薄盘。齿尖和定子之间的摩擦旋转主轴移动定子,最后将盘旋转到所需的速度。接下来建立具有适当摩擦的光束尖端和转子盘之间的接触型号,与转子盘的已建立的有限元模型一起建立。通过手中的完整模型,预测USM的动态以及相关的施加扭矩。最后进行实验,用于收集轮换速度的数据集,而扭矩验证了电机,定子和接触力的内置模型的有效性。

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