Iron Loss Quantification in the Aim of the Estimation of Eddy Currents in Clamping Devices

K. Darques, A. Tounzi, A. Benabou, S. Shihab, J. Korecki, W. Boughanmi, D. Laloy
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Abstract

In high power electrical machines, the leakage magnetic flux due to end windings induces eddy currents in clamping devices. However, it is quite difficult to quantify these losses. In order to study the effect of different clamping materials and the impact of the magnetization direction, an experimental mock-up composed of a stator and a clamping plate has been developed. An axial coil generates a circumferential magnetic flux in the stator core at different frequencies. Eddy current losses in the clamping plates are deduced from a power balance by subtracting Joule losses and iron losses from the total measured losses. Iron losses are deduced from 3D FE calculations while the impact of the frequency on B(H) curve is taken into account. Losses in the clamping device are then analyzed depending on experimental parameters.
铁损量化在箝位装置涡流估计中的应用
在大功率电机中,由于端部绕组的漏磁会在夹紧装置中产生涡流。然而,这些损失很难量化。为了研究不同夹紧材料的影响和对磁化方向的影响,研制了由定子和夹紧板组成的实验样机。轴向线圈在定子铁心中产生不同频率的周向磁通。夹紧板中的涡流损耗是通过从总测量损耗中减去焦耳损耗和铁损耗,从功率平衡中推导出来的。在考虑频率对B(H)曲线影响的情况下,通过三维有限元计算推导出铁损。然后根据实验参数分析夹紧装置中的损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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