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Modeling and Simulation of Microstructure Evolution of Cast Mg Alloy

机译:铸造镁合金组织演变的建模与仿真

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A cellular automaton (CA) model has been developed for simulating the microstructure evolution and dendrite morphology of cast magnesium alloys. The growth kinetics of dendrite tips is determined by the difference between local equilibrium composition and local actual composition obtained by solving the solute transport equation. Two sets of meshes, a hexagonal mesh and an orthogonal mesh, are used in the model to perform the simulation. The hexagonal mesh is used to perform CA calculation to reflect the texture of Mg alloy dendrites, and the orthogonal mesh is used to solve the solute transport equations. The model was applied to simulate single dendrite evolution and columnar dendrites growth of AZ91D Mg alloy, as well as multi-grain growth of Mg-10Gd-2Y-0.5Zr (wt%) Mg alloy. Permanent mold step-shaped castings of the two Mg alloys were poured and metallographic examinations were carried out for validating the present model. The simulation results agree well with metallographic results. The model can be applied to simulate the microstructure evolution and dendrite morphology of magnesium alloys.
机译:已经开发了一种细胞自动机(CA)模型,用于模拟铸造镁合金的微观结构演变和枝晶形态。枝晶尖端的生长动力学取决于通过求解溶质运移方程获得的局部平衡组成与局部实际组成之间的差异。在模型中使用了两组网格,即六角形网格和正交网格,以执行模拟。六边形网格用于执行CA计算以反映Mg合金枝晶的织构,而正交网格用于求解溶质迁移方程。该模型用于模拟AZ91D Mg合金的单晶生长和柱状枝晶生长,以及Mg-10Gd-2Y-0.5Zr(wt%)Mg合金的多晶粒生长。浇注了两种镁合金的永久铸模阶梯状铸件,并进行了金相检查以验证本模型的有效性。模拟结果与金相结果吻合良好。该模型可用于模拟镁合金的组织演变和枝晶形态。

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