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Parallel three-dimensional Monte Carlo simulations for effects of precipitates and sub-boundaries on abnormal grain growth of Goss grains in Fe-3%Si steel

机译:析出物和亚边界对Fe-3%Si钢中戈斯晶粒异常晶粒长大的影响的平行三维蒙特卡洛模拟

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摘要

Using parallel three-dimensional Monte Carlo simulations, we investigated the effects of precipitates and sub-boundaries on abnormal grain growth (AGG) of Goss grains based on real orientation data of primary recrystallized Fe-3%Si steel. The simulations showed that AGG occurred in the presence of precipitates which inhibited the grain growth of matrix grains, whereas it did not in the absence of precipitates. The role of precipitates in enhancing AGG is to maintain a relatively high fraction of high energy boundaries between matrix grains, which increases the probability of sub-boundary-enhanced solid-state wetting of an abnormally growing grain. The microstructure evolved by the simulation could reproduce many realistic features of abnormally growing grains, such as the formation of island and peninsular grains and merging of abnormally growing grains which appeared to be separated initially on the cross-section.
机译:利用平行三维三维蒙特卡洛模拟,我们基于初次再结晶的Fe-3%Si钢的真实取向数据,研究了析出物和子边界对Goss晶粒异常晶粒生长(AGG)的影响。模拟表明,AGG在存在沉淀的情况下发生,这会抑制基体晶粒的晶粒长大,而在没有沉淀的情况下则没有。沉淀物在增强AGG中的作用是维持基体晶粒之间较高能量边界的较高比例,这增加了异常生长晶粒的亚边界增强固态润湿的可能性。通过模拟演变而来的微观结构可以再现异常生长晶粒的许多现实特征,例如岛状和半岛状晶粒的形成以及异常生长晶粒的合并,这些异常生长晶粒在横截面上最初是分离的。

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