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首页> 外文期刊>Materials Characterization >{001}< 120 >-{113}< 361 > recrystallization textures induced by initial {001} grains and related microstructure evolution in heavily rolled electrical steel
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{001}< 120 >-{113}< 361 > recrystallization textures induced by initial {001} grains and related microstructure evolution in heavily rolled electrical steel

机译:重轧电工钢中{001} <120>-{113} <361>的初始{001}晶粒和相关的组织演变引起的再结晶织构

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This study investigates the origin of {001}< 120 >-{113}< 361 > recrystallization textures in heavily rolled electrical steel. Initial cube and {001}< 120 > grains contribute to strong {001}< 120 >-{113}< 361 > recrystallization textures. Investigations on {001} columnar grains link recrystallization behavior to initial orientations, and the orientations of new {001}< 120 >-{113}< 361 > grains are related to crystal rotation routes during deformation. Initial cube grains lead to fine nuclei showing strong {001}< 120 > texture component, whereas {001}< 110 > grains cause uniformly deformed microstructure and negligible nucleation. For initial {001}< 120 > grains, the nucleation priority of both {001}< 120 > and {113}< 361 > grains are obtained in deformed {001}-{112}< 110 > areas, and these recrystallized grains are larger than those induced by initial cube grains. In addition to the {001}< 120 >-{113}< 361 > nucleation advantage owing to initial cube and {001}< 120 > grains, {113}< 361 > grains show size advantage and strengthen {113}< 361 > texture. Regarding Hi-B grain-oriented electrical steel samples, {001} grains in annealed hot bands illustrate deformation and recrystallization behaviors similar to those of columnar grains. Preferred {001}< 120 >-{113}< 361 > nucleation and coarse {001}< 120 >-{113}< 361 > recrystallized microstructure show the effect of initial {001}< 120 > grains to high extent, and these coarse recrystallized grains negatively affect the secondary recrystallization of Goss grains. (C) 2016 Elsevier Inc. All rights reserved.
机译:本研究调查了重轧电工钢中{001} <120>-{113} <361>重结晶织构的起源。初始立方晶和{001} <120>晶粒有助于增强{001} <120>-{113} <361>的重结晶织构。对{001}柱状晶粒的研究将再结晶行为与初始取向联系起来,新的{001} <120>-{113} <361>晶粒的取向与变形过程中的晶体旋转路径有关。最初的立方晶粒导致细核,显示出强大的{001} <120>织构成分,而{001} <110>晶粒导致均匀变形的微观结构和可忽略的成核。对于初始的{001} <120>晶粒,在变形的{001}-{112} <110>区域中获得{001} <120>和{113} <361>晶粒的成核优先级,这些重结晶晶粒为大于最初的立方晶粒所诱导的晶粒。除了{001} <120>-{113} <361>由于初始立方和{001} <120>晶粒而具有成核优势外,{113} <361>晶粒还显示出尺寸优势并增强了{113} <361>质地。对于Hi-B晶粒取向电工钢样品,退火热带中的{001}晶粒表现出类似于柱状晶粒的变形和再结晶行为。优选的{001} <120>-{113} <361>成核和粗晶粒{001} <120>-{113} <361>重结晶的微观结构在很大程度上显示出初始{001} <120>晶粒的作用,这些粗大的再结晶晶粒会对高斯晶粒的二次再结晶产生负面影响。 (C)2016 Elsevier Inc.保留所有权利。

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