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Identification of representative anisotropic material properties accounting for friction and preloading effects: A contribution for the modeling of structural dynamics of electric motor stators

机译:鉴定代表性各向异性材料特性核算摩擦和预加载效应:电动机定子结构动态建模的贡献

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Simulating the dynamic behavior and determining equivalent material properties for anisotropic models, superelements or structures subjected to preloads or friction remains a challenging issue. Amongst other practical applications, modeling interactions between the steel sheets in industrial magnetic cores of electric motor stators is a complex task, as it requires anticipating behavioral heterogeneities in the structure, and possibly represents significantly costly operations for performing modal or dynamic response simulations. In this article, a method for identifying equivalent material properties to anisotropic structures is developed, which is able to take into account the influence of preloads and friction on the material properties, later used in structural dynamics simulations. The proposed approach can be used with superelements, converting stiffness matrices into elasticity matrices. The method is first applied to a triclinic model, and recreates its elasticity matrix with little derivation. Then, an equivalent linear material is computed for a continuous structure under preloading. Compared at low frequencies, the vibration behavior of the preloaded structure and its equivalent effective media are in good agreement. The operation is repeated with a laminated stack under preloading. Again, the dynamic behavior of the equivalent structure shows good accuracy compared to the initial preloaded stack. Finally, the magnetic core of an electric machine stator is modeled with equivalent anisotropic material properties, accounting for friction and preload in the yoke's and the teeth's steel sheets. The simulation of the structure's low-frequency radial vibration modes is satisfying, and shows improvement compared to orthotropic properties.
机译:模拟各向异性模型、受预加载或摩擦的超单元或结构的动力学行为和确定等效材料特性仍然是一个具有挑战性的问题。在其他实际应用中,电机定子工业磁芯中钢板之间的相互作用建模是一项复杂的任务,因为它需要预测结构中的行为不均匀性,并且可能代表执行模态或动态响应模拟的成本非常高的操作。本文提出了一种识别各向异性结构等效材料特性的方法,该方法能够考虑预载荷和摩擦对材料特性的影响,后来用于结构动力学模拟。该方法可用于超单元,将刚度矩阵转换为弹性矩阵。该方法首先应用于一个三斜模型,并在几乎没有推导的情况下重新创建其弹性矩阵。然后,计算预加载下连续结构的等效线性材料。与低频时相比,预加载结构及其等效有效介质的振动特性符合较好。在预加载下,对叠层堆重复该操作。同样,与初始预加载堆栈相比,等效结构的动态行为显示出良好的精度。最后,电机定子的磁芯采用等效各向异性材料特性建模,考虑了磁轭和齿钢板中的摩擦和预载。对该结构的低频径向振动模态进行了模拟,结果令人满意,与正交各向异性结构相比,其性能有所改善。

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