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Three-dimensional finite element analysis of interfacial delamination in traveling wave ultrasonic motors

机译:行波超声电机界面分层的三维有限元分析

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摘要

Ultrasonic motors (USMs) are novel electric motors used for positioning controls. Due to the drive characteristic of USMs, wear and fatigue of friction material at the contact friction interface are inevitable. Contact deformation can cause local damage of USMs. Therefore, obtaining the details of the stress distribution due to the inelastic deformation is important. In this paper, a contact model of traveling wave ultrasonic motor (TWUSM) is proposed. A three-dimensional finite element model with cohesive zone elements embedded between friction layer and rotor is then developed. Infinite finite elements are included in this modeling as the boundary condition. The evolution of deformation in friction layer and rotor due to the mechanical surface loading is presented. The possible interfacial delamination process between friction material and rotor is also numerically investigated.
机译:超声波电动机(USM)是用于定位控制的新型电动机。由于USM的驱动特性,在接触摩擦界面处摩擦材料的磨损和疲劳是不可避免的。接触变形会引起USM的局部损坏。因此,获得由于非弹性变形引起的应力分布的细节很重要。本文提出了行波超声波电动机(TWUSM)的接触模型。然后建立了在摩擦层和转子之间嵌有内聚区元素的三维有限元模型。无限有限元作为边界条件包含在此建模中。给出了由于机械表面载荷引起的摩擦层和转子变形的演变。还在数值上研究了摩擦材料与转子之间可能的界面分层过程。

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