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SIMULATION OF MICROSTRUCTURE EVOLUTION DURING SOLIDIFICATION OF MAGNESIUM ALLOYS

机译:镁合金凝固过程中微观组织演变的模拟

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摘要

A coupled cellular automaton (CA) - finite element (FE) model was developed to calculate the growth of dendrites during the solidification of cubic and hexagonal metals. The model solves the conservation equations of mass, energy and solutes in order to calculate the temperature field, solute concentration and the growth morphology of dendrites, including the grain structure and the dendritic microstructure. Validation of the model was performed by comparing the simulation results with calculation results from previously published works, showing qualitatively good agreement in the dendritic morphology. Application to magnesium alloy AZ91 illustrates the difficulty of modeling dendrite growth in hexagonal systems, observed as deviations in growth direction caused by mesh-induced anisotropy. The model was applied to the simulation of small specimens with single- and multiple- equiaxed grain growths and columnar grain growth in directional solidification. The influence of cooling rate and some kinetics parameters on the grain morphology are also discussed.
机译:建立了耦合细胞自动机(CA)-有限元(FE)模型,以计算立方和六角形金属凝固过程中枝晶的生长。该模型求解质量,能量和溶质的守恒方程,以计算温度场,溶质浓度和树枝状晶体的生长形态,包括晶粒结构和树枝状微结构。通过将模拟结果与先前发表的工作的计算结果进行比较,对模型进行了验证,显示出树突形态在质量上有很好的一致性。在镁合金AZ91上的应用说明了在六方晶系中模拟枝晶生长的难度,这是由于网状各向异性引起的生长方向偏差。该模型被用于模拟具有单等轴晶粒和多等轴晶粒生长以及定向凝固中柱状晶粒生长的小试样。还讨论了冷却速度和一些动力学参数对晶粒形貌的影响。

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