Study of the test base influence on the electric motor reed critical frequency

Vinícius Sell Goncalves, Hilton Penha Silva, Eduardo Schiochet
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Abstract

This work focuses on a development of an accurate Finite Element Method (FEM) model to predict the Reed Critical Frequency (RCF) of an electric motor and a study of the influence of the fixation base on the deviations from the numerical to the experimental results. Ideally, the base for experimental tests needs to be sized in a way to avoid any deflection or displacement in the attachment position of the motor. In order to evaluate the FEM model and the influence of the base characteristics in the RCF results, three testing bases were used to test the same electric motor. The relation of the masses of the bases to the mass of the motor are nearly eight times, twenty seven times and ninety eight times, respectively.
试验基座对电机簧片临界频率影响的研究
本工作的重点是开发一个精确的有限元方法(FEM)模型来预测电机的簧片临界频率(RCF),并研究固定基座对数值结果与实验结果偏差的影响。理想情况下,实验测试的基础需要在某种程度上避免电机附着位置的任何偏转或位移。为了评估有限元模型和基座特性对RCF结果的影响,采用三个试验基座对同一台电动机进行了试验。底座质量与电机质量的关系分别接近8倍、27倍和98倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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