首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Formation of Highly Misoriented Fragments at Hot Band Grain Boundaries During Cold Rolling of Interstitial-Free Steel
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Formation of Highly Misoriented Fragments at Hot Band Grain Boundaries During Cold Rolling of Interstitial-Free Steel

机译:无间隙钢冷轧过程中热带晶界处高度取向不正确的碎片的形成

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摘要

The deformation heterogeneities that form in the vicinity of prior hot band grain boundaries in a 75 pct cold-rolled interstitial-free steel have been investigated by 3D electron backscatter diffraction. Grain boundary-affected regions occupy a large fraction of the overall material volume. The coexistence of several features, such as steep orientation gradients up to 5 deg/mu m, high-angle boundary networks, and thin, elongated grain boundary fragments, has confirmed the highly complex nature of these regions. Most notably, these thin boundary fragments were found to be significantly misoriented from any of the deformed grains immediately adjacent to the boundary. Overall, grain boundary regions adopt the so-called 'deformation banding' mode of deformations on both the micro (e.g., steep gradients)- and nano (e.g., thin fragments)-length scales. Grain boundary structures comprise the essential features to act as preferred sites for recrystallization. The discovery of numerous thin grain boundary fragments in the deformation microstructure provides a plausible explanation for the origin of recrystallized grains with orientations other than those found within the adjoining deformed grains in the vicinity of grain boundaries; this phenomenon has been commonly observed in texture data for many years but remained unexplained.
机译:通过3D电子背散射衍射研究了在75 pct冷轧无间隙钢中先前热带晶界附近形成的变形异质性。受晶粒边界影响的区域占整个材料体积的很大一部分。几个特征的共存,例如高达5度/μm的陡峭取向梯度,高角度边界网络和细长的晶粒边界碎片,已经证实了这些区域的高度复杂性。最显着的是,发现这些薄的边界碎片与紧邻边界的任何变形晶粒的取向明显不同。总的来说,晶界区域在微米(例如陡峭的梯度)和纳米(例如薄的碎片)长度尺度上都采用所谓的“变形带”变形模式。晶界结构包括作为重结晶的优选位点的基本特征。在变形微观结构中发现了许多细晶粒边界碎片,这为重结晶晶粒的起源提供了合理的解释,这些晶粒的取向不同于晶界附近相邻变形晶粒中的取向。这种现象已在纹理数据中被普遍观察了很多年,但仍无法解释。

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