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A Modified Cellular Automaton Model for Simulation of Dendritic Microstructures in Solidification of Alloys

机译:一种改进的蜂窝自动机模型,用于模拟结石微结构在合金中的凝固中的仿真

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A two-dimensional modified cellular automaton (MCA) model was developed to predict the evolution of the microstructures in solidification of alloys. Different from the classical cellular automata in which only the temperature field was calculated, the MCA model is coupled with the curvature and the solute redistribution both in liquid and solid during solidification. The effects of constitutional undercooling and curvature undercooling are incorporated on the equilibrium interface temperature. The relationship between the growth velocity of a dendrite tip and the local undercooling is calculated according to the KGT (Kurz-Giovanola-Trivedi) model. This MCA model was applied to simulate the free dendritic growth from an undercooled melt as well as the competitive dendritic growth and non-dendritic structure evolution in practical casting solidification.
机译:开发了一种二维改性蜂窝自动机(MCA)模型以预测合金凝固微观结构的演变。与仅计算温度场的典型蜂窝自动机不同,MCA模型与凝固期间含有液体和固体的曲率和溶质再分配。构成过冷和曲率过冷的影响纳入平衡界面温度。根据KGT(Kurz-Giovanola-Trivedi)模型计算树突尖端和局部过冷的生长速度之间的关系。该MCA模型用于模拟从未冷却熔体的自由树突生长以及实际铸造凝固中的竞争性树突生长和非树枝状结构演变。

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