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首页> 外文期刊>Journal of Materials Science >Cellular automata modeling of static recrystallization based on the curvature driven subgrain growth mechanism
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Cellular automata modeling of static recrystallization based on the curvature driven subgrain growth mechanism

机译:基于曲率驱动亚晶粒生长机理的静态再结晶元胞自动机建模

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A two-dimensional cellular automata model was developed to describe the static recrystallization (SRX) arising from the subgrain growth, the driving force of which is dependent on boundary energy and local curvature. At the same time, the subgrain boundary energy and mobility rely on the boundary misorientation angle. On the basis, a deterministic switch rule was adopted to simulate the subgrain growth and kinetics of recrystallization quantitatively to provide an insight into the grain boundary bulging nucleation mechanism. Microstructure evolutions during SRX in different cases were simulated by the developed model. At the beginning of the simulation, the initial polycrystalline microstructure which contains large number of uniformly distributed subgrains in every pre-existing grain was prepared using simple assumption based on experimental observations. Then, both homogeneous and inhomogeneous subgrain growth phenomena were captured by the simulation with different inter-subgrain misorientation, which showed continuous and discontinuous recrystallization, respectively. The effects of initial mean subgrain radius, distribution of initial subgrains, distribution of inter-subgrain misorientations, and annealing temperature on the recrystallization kinetics were also investigated.
机译:建立了二维细胞自动机模型来描述亚晶粒生长引起的静态再结晶(SRX),其驱动力取决于边界能和局部曲率。同时,亚晶粒的边界能和迁移率依赖于边界失取向角。在此基础上,采用确定性转换规则定量地模拟了亚晶粒的生长和再结晶动力学,以提供对晶界凸出成核机制的认识。通过开发的模型模拟了不同情况下SRX期间的微观结构演变。在模拟开始时,基于实验观察,使用简单的假设就可以制备出初始的多晶微观结构,该结构在每个预先存在的晶粒中均包含大量均匀分布的亚晶粒。然后,通过不同的亚晶粒间取向错误,通过模拟捕获了均匀和不均匀的亚晶粒生长现象,分别显示了连续和不连续的重结晶。还研究了初始平均亚晶粒半径,初始亚晶粒的分布,亚晶粒间取向错误的分布以及退火温度对重结晶动力学的影响。

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