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Method for acquisition of equivalent material parameters considering orthotropy of stator core and windings in SRM

机译:获取考虑定子芯的关节性的等效材料参数的方法和SRM中的绕组

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摘要

To solve the problem of the orthotropic material parameters acquisition, a novel method for the acquisition of the equivalent material parameters considering the orthotropy of the stator core and the windings in a switched reluctance motor (SRM) is proposed. First, a theoretical analysis of the influences of the orthotropic material parameters on the vibration characteristics is implemented. Second, according to the finite element (FE) equivalent model and the modal parameters obtained by the modal test, the equivalent orthotropic material parameters of the stator core and the windings are captured, respectively. Finally, considering the complex connections among components, a FE model of a SRM is established and validated by the modal test. The results indicate that the vibration characteristics of the FE model of the stator core and the windings with the orthotropic features can be analysed by assigning the equivalent orthotropic material parameters; the elastic modulus E-x (E-y) and the shear modulus G(xy) have effects on both the symmetric modal frequencies and the antisymmetric modal frequencies; the shear modulus G(xz) (G(yz)) only affects the antisymmetric modal frequencies; the elastic modulus E-z can neither change the symmetric modal frequencies nor the antisymmetric modal frequencies.
机译:为了解决正交材料参数采集的问题,提出了一种用于获取考虑定子芯的关节度的等效材料参数的新方法以及开关磁阻电动机(SRM)中的绕组。首先,实施了对正交材料参数对振动特性的影响的理论分析。其次,根据有限元(Fe)等效模型和由模态测试获得的模态参数,分别捕获定子芯和绕组的等效正交材料参数。最后,考虑到组件之间的复杂连接,模型通过模态测试建立和验证了SRM的FE模型。结果表明,通过分配等效的正交材料参数,可以分析定子芯的Fe模型和具有正交特征的绕组的振动特性;弹性模量E-X(E-Y)和剪切模量G(XY)对对称模态频率和防反对子频率的影响有影响;剪切模量G(XZ)(G(yz))仅影响反对二种模态频率;弹性模量E-Z既不能改变对称模态频率,也不能改变反对称模态频率。

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