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Simulation on Changes in Microstructure and Texture during Normal Grain Growth of Steel Sheet by Two-dimensional Local Curvature Multi-vertex Model

机译:二维局部曲率多顶点模型模拟钢板正常晶粒长大过程中组织和组织的变化

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The two-dimensional local curvature multi-vertex model was applied to the normal grain growth of actual steel sheets for examination of the effect of the respective misorientation dependencies of grain boundary energy and mobility on grain growth and for comparison with experimental results. The simulation result revealed that the grain boundary energy had a major influence on the change in misorientation distribution with grain growth, whereas the grain boundary mobility did not have such a large influence. The simulation considering the misorientation dependency on grain boundary energy and mobility, in particular, accounting for Σ1 and high angle boundaries was constructed and was effective for reproducing the experimental results. Simulated microstructures were similar to the experimental ones; however, the detailed standard deviation of grain size distribution was smaller in the calculation than that in the experiment. The texture change with grain growth in the simulation was weaker than that in the actual steel sheets. As a whole, the developed model described the experimental grain growth well, and the difference in the results between the simulation and the experiment is probably attributable to the difference in dimension; i.e. , two-dimension in simulation and three-dimension in experiment and the inaccuracy of the grain boundary conditions such as grain boundary energy and mobility in the model.
机译:将二维局部曲率多顶点模型应用于实际钢板的正常晶粒长大,以检查晶界能和迁移率对取向的依赖性对晶粒长大的影响,并与实验结果进行比较。模拟结果表明,晶界能对晶粒取向不良分布随晶粒长大的影响较大,而晶界迁移率的影响不大。考虑到取向差对晶界能量和迁移率的依赖性,特别是考虑了Σ1和大角度晶界,进行了模拟,并有效地再现了实验结果。模拟的微观结构与实验相似。但是,计算中的粒度分布的详细标准偏差比实验中的小。在模拟中,随晶粒长大的织构变化比实际的钢板要弱。总体而言,所开发的模型很好地描述了实验晶粒的生长,并且模拟与实验结果之间的差异可能归因于尺寸的差异。即,模拟中的二维和实验中的三维,以及模型中晶界条件(如晶界能和迁移率)的不准确性。

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