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Dynamic Analysis of Composite Stator of Ultrasonic Motor Based on Substructure Interface Loading Theory

机译:基于子结构界面加载理论的超声波电动机复合定子动力分析

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Due to its compact sizing, fast response and good control performance traveling wave type rotary ultrasonic motor (TRUM) has significant potentials for applications in robot actuation. Moreover the dynamic characteristic of composite stator contributes much to the performance of TRUM. In this paper a new modeling strategy for the composite stator of TRUM has been developed. First the composite stator is divided into several simpler substructures, and a kind of semi-analytical annular element is applied to mesh inner web and outer annular composite plates. Then each tooth on top of stator is described by hexahedron isoparametric element with 8 nodes and its dynamical contribution (including stiffness and mass) to the substrate is calculated based on substructure interface loading theory. So the unknown degrees of the freedom are reduced and the higher computational efficiency and more accurate result will be achieved. At last the substructural modal synthesis theory is applied to derive the whole stator by integrating the substructures. In the end the computational results are found to be in good agreement with those from experiments and it is proved that the proposed model in this paper allows for quick and precise dynamical analysis of the composite stator. Moreover the harmonic response analysis denotes the motion of the point on the top of the composite stator is three dimensional. So it suggests that the three dimensional contact mechanisms exist on the contact interface between the stator and rotor.
机译:由于其紧凑的尺寸,快速的响应和良好的控制性能,行波型旋转超声电机(TRUM)在机器人致动方面具有巨大的潜力。此外,复合定子的动态特性对TRUM的性能有很大的贡献。本文为TRUM复合定子开发了一种新的建模策略。首先,将复合定子划分为几个较简单的子结构,然后将一种半解析环形元件应用于内腹板和外环形复合板。然后,通过具有8个节点的六面体等参元素描述定子顶部的每个齿,并根据子结构界面载荷理论计算其对基体的动力学贡献(包括刚度和质量)。因此,减少了未知的自由度,可以实现更高的计算效率和更准确的结果。最后,采用子结构模态综合理论,通过对子结构的集成来推导整个定子。最后,计算结果与实验结果吻合良好,证明了本文提出的模型可以对复合材料定子进行快速,精确的动力学分析。此外,谐波响应分析表明复合定子顶部的点的运动是三维的。因此,这表明在定子和转子之间的接触界面上存在三维接触机制。

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