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首页> 外文期刊>Archives of Metallurgy and Materials >MICROSTRUCTURE AND TEXTURE EVOLUTION IN TEMPER ROLLED Fe-Si STEELS WITH NEW SYSTEM NANO-INHIBITORS UNDER THE DYNAMIC ANNEALING CONDITIONS
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MICROSTRUCTURE AND TEXTURE EVOLUTION IN TEMPER ROLLED Fe-Si STEELS WITH NEW SYSTEM NANO-INHIBITORS UNDER THE DYNAMIC ANNEALING CONDITIONS

机译:动态退火条件下新型系统纳米抑制剂的淬火Fe-Si钢的微观结构和纹理演化

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摘要

This work investigates the microstructure and texture evolution in grain-oriented electrotechnical steel with a new inhibition system based on vanadium carbides nano-particles. The novel approach for the preparation of this steel with appropriate final magnetic properties combines not only nanoinhibitors based on the vanadium carbides precipitations but also includes strain-induced grain growth mechanism in combination with dynamic continuous annealing during the secondary recrystallization. The experimental grain-oriented steel with proposed new chemical composition was prepared in laboratory conditions. The texture analysis has shown that suggested procedure led the formation of sufficiently strong {110}< 001 > Goss texture during the short time period of a final annealing process, which is comparable to that obtained in the conventionally treated grain-oriented steels.
机译:本作品研究了基于碳化钒纳米粒子的新抑制系统的晶粒导向电工钢的微观结构和纹理演化。 通过适当的最终磁性制备该钢的新型方法不仅基于碳化物沉淀的碳化物沉淀而结合的纳米抑制器,而且包括在二次重结晶期间与动态连续退火组合的应变诱导的晶粒生长机制。 实验晶粒化钢与所提出的新化学成分在实验室条件下制备。 纹理分析表明,建议的程序在最终退火过程的短时间内形成了足够强的{110} <001>高峰纹理,其与在常规处理的晶粒钢中获得的相当。

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