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Finite element solution for intermittent-contact problem with piezoelectric actuation in ring type USM

机译:环形USM压电驱动间歇接触问题的有限元解决方案

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摘要

In this paper, a 3-D finite element (FE) framework with fully coupling among the piezoelectric coupled stator, rotor and contact interface to simulate the steady-state and transient behavior of ultrasonic motor (USM) is proposed, which produces fairly accurate results at moderate computational cost. The difficulties of FE analysis for a general intermittent compact problem with piezoelectric actuation are highlighted. The equivalent piezoelectric force (EPF) solution procedure is proposed where the converse piezoelectric effect is simulated using thermal analogy. This allows the stator, rotor and contact interface to be solved as a dynamically coupled system providing the transient intermittent-contact responses. However, if only the steady-state response of the USM is of interest, then it will be more efficient to use the proposed steady-state contact (SC) procedure. Both procedures have been performed using ABAQUS~® version 6.4. For given applied torque, axial force, and piezoelectric drive voltages as inputs, the general measures of USM performance are obtained and compared with published theoretical, numerical and experimental results. The results provide confidence to the proposed approaches in modeling and analysis of USM at moderate computation cost and can serve as an efficient design tool for optimizing prototypes.
机译:本文提出了一种3D有限元(FE)框架,该框架在压电耦合的定子,转子和接触界面之间完全耦合,以模拟超声电机(USM)的稳态和瞬态行为,从而产生相当准确的结果以适度的计算成本。强调了有限元分析对于压电驱动的一般间歇性紧凑问题的困难。提出了等效压电力(EPF)求解程序,其中使用热模拟方法模拟了逆压电效应。这允许将定子,转子和触点接口解决为动态耦合系统,从而提供瞬态间歇接触响应。但是,如果仅对USM的稳态响应感兴趣,那么使用建议的稳态接触(SC)程序将更加有效。两种程序都使用ABAQUS®版本6.4执行。对于给定的施加扭矩,轴向力和压电驱动电压作为输入,获得了USM性能的常规指标,并将其与已发表的理论,数值和实验结果进行了比较。结果为以合理的计算成本为USM建模和分析提出的方法提供了信心,并且可以作为优化原型的有效设计工具。

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