Parameter Study on the Effects of Spot-welding on the Electromagnetic Properties of Magnetic Cores Constructed from Electrical Steel.

D. Ukwungwu, T. Krichel, B. Schauerte, N. Leuning, S. Olschok, U. Reisgen, K. Hameyer
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引用次数: 1

Abstract

In this paper, a parameter study on the effects of spot-welding of thin electrical steel sheets is reported and evaluated by experimental measurements. Welding is a typical method to connect iron stacks of electrical machines. However, this process deteriorates the magnetic properties of the said electrical sheets, thereby increasing the iron losses and decreasing the magnetization of the magnetic core. The effects of three main welding process parameters namely: laser-power, laser focal position and working pressure are studied and evaluated. The dependency of the material degradation due to these parameters are quantified and metrologically characterized. In particular the approach of a stochastic spot-welding procedure is studied. This is due to its apparently less electromagnetic degradation, when compared to other welding procedures. Employing the stochastic spot-welding joins two or three single ring-shaped sheets together in an stochastic pattern, which reduces the eddy-current losses around the welded point.
点焊对电工钢磁芯电磁性能影响的参数研究。
本文报道了薄电工钢板点焊效果的参数研究,并通过实验测量对其进行了评价。焊接是连接电机铁堆的一种典型方法。然而,这一过程恶化了所述电片的磁性,从而增加了铁损耗并降低了磁芯的磁化强度。对激光功率、激光聚焦位置和工作压力三个主要焊接工艺参数的影响进行了研究和评价。这些参数对材料降解的依赖性进行了量化和计量表征。特别研究了随机点焊过程的求解方法。这是由于其明显较少的电磁退化,当与其他焊接程序。采用随机点焊将两片或三片单环状薄板以随机方式连接在一起,减少了焊接点周围的涡流损耗。
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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