Experimental impact of pulsed laser irradiation, scribing and ablation on 2-D scalar and vector magnetic losses and general properties of Grain-Oriented Electrical Steels

Préscillia Dupont, M. Nesser, O. Maloberti, J. Dupuy, M. Lamblin, M. Ployard, D. Laloy, J. Fortin
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引用次数: 1

Abstract

Increasing the efficiency of electrical equipment and machines (transformers, large alternators) is a global aim and a way to contribute to its fulfilment is to reduce iron losses of soft magnetic materials within their magnetic cores. Improvement of soft magnetic material properties, especially Grain-Oriented Electrical Steels (GOES), is possible using surface laser treatments and is classically obtained for alternating fields parallel to the Rolling Direction (RD). However, flux lines are not always parallel to this preferred direction and can also rotate. The behavior of laser treated GOES under rotational and alternating fields parallel to the Transverse Direction (TD) remains slightly explored and can be investigated further. In this paper, the magnetic behavior of GOES samples is measured with both unidirectional (with Single Sheet Tester (SST)) and rotational (with Rotational power loss Single Sheet Tester (RSST)) fields. Then, the experimental impacts of different laser treatments (irradiation, scribing and new laser process called ablation with Ultra-Short laser Pulses) on 1-D, 2-D and rotational magnetic losses are compared and discussed. The goal is to optimize the vector behavior of GOES. Power loss reductions are reported for several laser sets of parameters and for several polarization/frequency conditions under both unidirectional and rotational fields. Finally, a short analysis on the difference between rotational and average alternating losses leads to use 2-D vector magnetic properties involving a RD-TD coupled loss contribution while characterizing soft magnetic materials.
脉冲激光辐照、刻划和烧蚀对晶粒取向电工钢二维标量和矢量磁损耗及一般性能的实验影响
提高电气设备和机器(变压器、大型交流发电机)的效率是一个全球性的目标,实现这一目标的一种方法是减少磁芯内软磁材料的铁损耗。利用表面激光处理可以改善软磁材料的性能,特别是晶粒取向电工钢(go),并且可以在平行于轧制方向(RD)的交变场中获得。然而,磁通线并不总是平行于这个首选方向,也可以旋转。激光处理的氧化石墨烯在平行于横向(TD)的旋转和交变场下的行为还有待进一步研究。本文采用单向场(单片测试仪(SST))和旋转场(旋转功率损耗单片测试仪(RSST))测量了氧化石墨烯样品的磁性行为。然后,比较和讨论了不同激光处理(辐照、刻划和超短激光脉冲烧蚀)对一维、二维和旋转磁损耗的实验影响。目标是优化go的矢量行为。据报道,在单向场和旋转场下,几种参数和几种偏振/频率条件下的激光功率损耗降低。最后,对旋转和平均交变损耗之间的差异进行了简短的分析,导致在表征软磁材料时使用涉及RD-TD耦合损耗贡献的二维矢量磁性能。
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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