Analyzing Recrystallization Behavior of Heterogeneous Structures Single-Phase Al Alloys

Khaled Adam, D. Field
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引用次数: 1

Abstract

Abstract In this research, mixed structures are created so that they have regions where dislocations accumulate and a region that is, to some extent, free from dislocations. These heterogeneous structures that bring together both soft and hard domains in a single sample are presumed to produce a fine recrystallized grain and recovered large grain structures if they are subsequently heated, leading to limited recrystallization. In the present work, the 3D Potts model has been modified to tailor and model complex problems such as heterogeneous structure recrystallization. This is done by introducing a limited fraction of nucleating grains to the structure where the highest geometrically necessary dislocation density distributions develop in the rolled layers at early simulation time as well as by controlling structure evolution in the undeformed structure layer using grain boundary energy criteria. Additionally, the designed microstructures were investigated using electron backscatter diffraction measurements and an in-situ heating stage performed on material with various degrees of deformation.
非均相组织单相铝合金的再结晶行为分析
在这项研究中,混合结构被创造出来,使其具有位错积累的区域和在某种程度上没有位错的区域。这些将软畴和硬畴结合在一起的非均质结构被认为会产生细小的再结晶晶粒,如果随后加热,则会恢复大晶粒结构,从而导致有限的再结晶。在本工作中,三维Potts模型已被修改,以适应和模拟复杂的问题,如非均质结构再结晶。这是通过将有限比例的成核晶粒引入到组织中来实现的,在早期模拟时间,轧制层中出现了几何上必需的最高位错密度分布,以及通过使用晶界能标准控制未变形组织层中的组织演变。此外,利用电子背散射衍射测量和不同变形程度的材料的原位加热阶段研究了所设计的微观结构。
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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