方向错误
晶粒生长
材料科学
晶粒异常长大
晶界
晶界强化
细胞自动机
降水
色散(光学)
微观结构
冶金
各向异性
数学
物理
光学
算法
气象学
量子力学
作者
Kenji Murata,Chihiro Fukui,Fei Sun,Ta‐Te Chen,Yoshitaka Adachi
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2023-12-27
卷期号:17 (1): 138-138
被引量:6
摘要
The abnormal grain growth of steel, which is occurs during carburization, adversely affects properties such as heat treatment deformation and fatigue strength. This study aimed to control abnormal grain growth by controlling the materials and processes. Thus, it was necessary to investigate the effects of microstructure, precipitation, and heat treatment conditions on abnormal grain growth. We simulated abnormal grain growth using the cellular automaton (CA) method. The simulations focused on the grain boundary anisotropy and dispersion of precipitates. We considered the effect of grain boundary misorientation on boundary energy and mobility. The dispersion state of the precipitates and its pinning effect were considered, and grain growth simulations were performed. The results showed that the CA simulation reproduced abnormal grain growth by emphasizing the grain boundary mobility and the influence of the dispersion state of the precipitate on the occurrence of abnormal grain growth. The study findings show that the CA method is a potential technique for the prediction of abnormal grain growth.
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