一种基于连续参数的方法来模拟机械应力对电磁迟滞特性的影响

B. Schauerte, S. Steentjes, N. Leuning, K. Hameyer
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引用次数: 1

摘要

提高电机的旋转频率以最大化功率密度会导致更高的拉伸和压缩机械应力,这些应力沿着转子的横截面分布不均匀,并且增加了先前制造和加工步骤引起的已经存在的残余应力。这些影响要么被忽略,要么只在机器布局和设计的后处理中考虑。在数值模拟中忽略力学对磁性能的影响会导致不确定性和与实际材料行为的偏差。这种偏差被传递到随后的损失计算和进一步的后处理,导致不准确的损失图。本文研究了机械应力对非取向软磁材料的磁滞特性和发生损耗的影响,并采用调整后的能量磁滞模型进行了模拟。所选择的模型能够重新创建观察到的行为,非迟滞和迟滞组件,然后将被评估。该模型的评估将重点放在各种特征磁性能上。即所需的最大磁场,测量和模拟的损耗以及模型重建实际测量的磁通量路径的能力,包括剩磁极化和矫顽力磁场。
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A continuous parameter-based approach to model the effect of mechanical stress on the electromagnetic hysteresis characteristic
Increasing rotating frequencies of electrical machines to maximize the power density lead to higher tensile and compressive mechanical stresses that are distributed inhomogeneously along the rotors’ cross section and add up to the already present residual stresses induced by the preceding manufacturing and processing steps. These effects are either neglected or considered only in the post-processing of the machine layout and design.Neglecting the mechanical impact on the magnetic properties during numerical machine simulations leads to uncertainties and deviations from the actual material behavior. This deviations are transmitted to the subsequent loss calculation and further post-processing resulting in inaccurate loss maps. In this paper the influence of mechanical stress on the hysteresis properties and occurring losses of a non-oriented soft magnetic material are examined and replicated by an adjusted energy-based hysteresis model. The chosen models ability to recreate the observed behavior for both, anhysteretic and hysteretic components, will then be evaluated. The evaluation of the model will be performed with focus on a variety of characteristic magnetic properties. Namely the required maximum magnetic field, measured and simulated losses and the ability of the model, to recreate the actual measured magnetic flux paths including the remanence polarisation and coercive magnetic field.
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