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Fast approximate calculation of the radial and tilt stiffness of magnetic bearings using magnetostatic 2D finite element analysis

机译:磁轴2D有限元分析快速近似计算磁轴承径向和倾斜刚度

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In order to calculate the dynamic behavior of magnetically levitated rotors (eigenfre-quencies, rotor deflections...), the knowledge of the radial and tilt stiffness of the active and passive magnetic bearings is necessary. An optimization of the stability against external disturbances and internal excitations (unbalance, magnetic tolerances) requires a large number of calculations of these magnetic bearing parts. Therefore, a short calculation time of the reluctance forces is crucial. As an original rotational symmetry is lost in case of a radially deflected or tilted rotor, the tilt stiffness and the radial stiffness of magnetic bearing parts are usually calculated with a 3D-FE software. These time-consuming calculations prevent fast optimizations of the rotor dynamics. This paper shows a method for the approximate calculation of the radial and tilt stiffness of rotationally symmetric magnetostatic problems by using a 2D-FE program. The accuracy of the approximation method will be verified by comparing the results with the exact analytical solution of a pure permanent magnetic configuration.
机译:为了计算磁悬浮转子的动态行为(Quenefre-Quencies,转子偏转......),需要有效和被动磁轴承的径向和倾斜刚度的知识。对外部干扰和内部激发的稳定性(不平衡,磁性公差)的优化需要大量计算这些磁性轴承部件。因此,磁阻力的短计算时间至关重要。由于在径向偏转或倾斜转子的情况下丢失原始旋转对称,磁轴承部件的倾斜刚度和径向刚度通常用3D-FE软件计算。这些耗时的计算可以防止转子动力学的快速优化。本文通过使用2D-FE程序,示出了一种用于近似计算旋转对称磁静态问题的径向和倾斜刚度的方法。通过将结果与纯永久性磁性配置的精确分析溶液进行比较,将通过将结果与纯永磁构造的精确分析溶液进行比较来验证近似方法的准确性。

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