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首页> 外文期刊>Journal of magnetism and magnetic materials >Cube texture evolution and magnetic properties of 6.5 wt% Si electrical steel fabricated by surface energy and three-stage rolling method
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Cube texture evolution and magnetic properties of 6.5 wt% Si electrical steel fabricated by surface energy and three-stage rolling method

机译:表面能和三步轧制法制备6.5 wt%硅电工钢的立方织构演变和磁性能

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摘要

0.1 mm-thick 6.5 wt% Si electrical steel sheets with strong cube texture were successfully produced by surface energy effect and three-stage rolling method. The texture evolution and magnetic properties during the processing were briefly investigated, special attention was paid on the development of cube texture. The study shows that cube texture component was originated from the deformed cube grains existed in center layer of hot rolled sheet. During three-stage rolling and intermediate annealing, the cube texture component was enhanced. Attributed to the frequencies as well as size advantages of cube recrystallized grains during nucleation, a homogeneous microstructure associated with cube texture was produced after primary recrystallization. The mechanism responsible for the microstructure and texture of primary recrystallization was explained by strain induced boundary migration. After high temperature annealing for a long time, complete secondary recrystallization microstructure consisting of entirely large cube grains was produced by means of the surface energy effect. Both the strong cube texture and proper grain size enable final annealed sheets have excellent magnetic properties. The present study provides a new efficient way to optimize the recrystallization texture and improve the magnetic properties of double grain-oriented 6.5 wt% Si electrical steel.
机译:通过表面能效应和三步轧制方法成功地生产了厚度为0.1 texturemm的6.5wt%的具有强立方织构的Si电工钢板。简要研究了加工过程中的织构演变和磁性能,并特别注意了立方体织构的发展。研究表明,立方织构成分是由热轧薄板中心层存在的变形立方晶粒引起的。在三阶段轧制和中间退火过程中,立方织构成分得到增强。归因于成核过程中立方重结晶晶粒的频率和尺寸优势,在初次重结晶后产生了与立方织构相关的均匀微观结构。应变引起的边界迁移解释了造成初次再结晶的微观结构和织构的机理。经过长时间的高温退火后,通过表面能效应产生了由完全大的立方晶粒组成的完整的二次再结晶组织。强大的立方体质地和适当的晶粒尺寸均使最终退火的板材具有出色的磁性。本研究提供了一种新的有效方法,可优化重结晶织构并改善双晶粒取向6.5 wt%Si电工钢的磁性能。

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