Study on Influence of Microstructure and Thermal Treatment on Magnetic Losses from Non-Oriented Silicon Electrical Steel

E. Stoian, M. Enescu, V. Bratu, C. Rusănescu, F. Anghelina
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引用次数: 1

Abstract

Abstract Non/oriented electrical sheets are sheets tailored to produce specific properties and are produced from Fe-Si or Fe-Si-Al alloys. Non-oriented electrical steel sheets are incorporated into a wide range of equipment, from the simplest domestic appliances to hybrid and pure electric vehicles. In studying about the magnetic, there have a lot of method can be used for the different experiment requirement such as measuring magnetic flux, nominal loss and other objectives. During electrical steel processing, there are usually small variations in both chemical composition and thickness in the hot-rolled material that may lead to different magnetic properties for the same steel grade. Therefore, it is of great importance to know the effects of such variations on the final microstructure and magnetic properties of these steels. The purpose of this work was to study microstructural changes of the bands investigated during processing occurring siliceous strips with non-oriented grains. The second aim was to study the influence of grain size on the total magnetic losses at 1.0 T and 1.5 T. Materials 10 rolls intended to be processed into quality electrical steel M400-50A (according to EN 100027-1) were analyzed with metallographic microscope Neophet 32 and the magnetic characteristics was made with Epstein frame according IEC 6040/4-2, with an exiting current frequency of 50Hz at 1.5T and 1.0T induction after aging treatment of 225°C for 24 hours. Sample for light microscopy observation were prepared by polishing and etching in 5% Nital.
无取向硅电工钢显微组织及热处理对磁损耗影响的研究
摘要:无取向电板材是由Fe-Si或Fe-Si- al合金制成的具有特定性能的板材。从最简单的家用电器到混合动力和纯电动汽车,各种设备都采用了无取向电工钢板。在对磁学的研究中,有许多方法可用于不同的实验要求,如测量磁通量、标称损耗等目的。在电工钢加工过程中,热轧材料的化学成分和厚度通常会有微小的变化,这可能导致同一钢种的磁性不同。因此,了解这些变化对这些钢的最终组织和磁性能的影响是非常重要的。本研究的目的是研究无取向硅质条带在加工过程中的微观组织变化。二是研究晶粒尺寸对1.0T和1.5T时总磁损失的影响。采用Neophet 32金相显微镜对拟加工成优质电工钢M400-50A(符合EN 100027-1)的10卷材料进行了分析,并根据IEC 6040/4-2的Epstein框架进行了磁特性分析,在225℃时效处理24小时后,在1.5T和1.0T感应下,用50Hz的电流频率进行了磁特性分析。在5%镍钛溶液中抛光和蚀刻制备光镜观察样品。
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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