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Effective approach for calculating critical speeds of high-speed permanent magnet motor rotor-shaft assemblies

机译:计算高速永磁电动机转子轴组件的临界速度的有效方法

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摘要

An effective approach is presented for large errors in calculating critical speed of rotor-shaft assembly with the commercial finite element software, is intended to develop the discrete model of the rotor-shaft assembly by using lumped mass method, which is supported by active magnetic bearings. The first two bending critical speeds are analysed by optimising the flexural rigidity coefficient based on transfer matrix method. Compared with experimental modal testing and finite element analysis, the results of the transfer matrix method are in good agreement with modal measurement, the percentage errors of the first two bending natural frequencies are 0.21 and 2.1%, respectively. Owing to the higher accuracy and numerical stability, the method used in this study is an effective way to calculate the critical speed of the rotor-shaft assembly.
机译:提出了一种利用商业有限元软件解决转子轴组件临界转速大误差的有效方法,旨在通过集总质量法开发转子轴组件的离散模型,该模型由主动电磁轴承支持。通过传递矩阵法优化了抗弯刚度系数,分析了前两个弯曲临界速度。与实验模态试验和有限元分析相比,传递矩阵法的结果与模态测量结果吻合良好,前两个弯曲固有频率的百分比误差分别为0.21和2.1%。由于具有较高的精度和数值稳定性,本研究中使用的方法是计算转子轴组件临界转速的有效方法。

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