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Parameter Equivalent Method of Stator Anisotropic Material Based on Modal Analysis

机译:基于模态分析的定子各向异性材料参数等效方法

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摘要

Accurate calculation of the vibration mode and natural frequency of a motor stator is the basis for reducing motor noise and vibration. However, the stator core and winding material parameters are difficult to determine, posing issues which result in modal calculation bias. To address the problem of calibrating the stator material parameters, we developed a parameter correction method based on modal frequency. First, the stator system was simplified to build a stator system finite element model. Secondly, the relationship between modal frequency and material parameters was analyzed by finite element software, the relationship between modal frequency and material parameters was derived, and the anisotropic material parameter correction method was summarized. Finally, a modal experiment was carried out by the hammering method, and the simulation and experimental errors were within 3%, which verified the accuracy of the finite element model. The proposed correction method of anisotropic material can quickly determine the stator material parameters, and the stator core and winding anisotropic material can ensure the accuracy of the modal analysis.
机译:精确计算电动机定子的振动模式和固有频率是降低电机噪声和振动的基础。然而,定子芯和绕组材料参数难以确定,构成导致模态计算偏差的问题。为了解决校准定子材料参数的问题,我们开发了一种基于模态频率的参数校正方法。首先,简化了定子系统以构建定子系统有限元模型。其次,通过有限元软件分析了模态频率和材料参数之间的关系,导出了模态频率和材料参数之间的关系,并且总结了各向异性材料参数校正方法。最后,通过锤击方法进行模态实验,仿真和实验误差在3%范围内,验证了有限元模型的准确性。所提出的各向异性材料的校正方法可以快速确定定子材料参数,并且定子芯和绕组各向异性材料可以确保模态分析的准确性。

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