首页> 外文会议>Symposium on Theory, Modeling and Numerical Simulation of Multi-Physics Materials Behavior >Simulation of the Columnar-to-Equiaxed Transition in Alloy Solidification- the Effect of Nucleation Undercooling, Density of Nuclei in Bulk Liquid and Alloy Solidification Range on the Transition
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Simulation of the Columnar-to-Equiaxed Transition in Alloy Solidification- the Effect of Nucleation Undercooling, Density of Nuclei in Bulk Liquid and Alloy Solidification Range on the Transition

机译:合金凝固中柱状到等轴过渡的仿真 - 核液中核液中核的效果,核液体密度和合金凝固范围

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A coupled cellular automaton-finite difference (CA-FD) model is used to simulate the detailed dendritic structure evolution of the columnar-to-equiaxed transition (CET) for Al-Cu alloys during solidification. The effects of material properties (nucleation undercooling, density of nuclei in bulk liquid and alloy solidification range) on the CET are investigated. Simulated results reveal that: (1) equiaxed grains form at an earlier stage with a smaller critical nucleation undercooling; (2) CET is promoted if the density of nuclei in bulk liquid is increased; (3) extending the alloy solidification range promotes the CET. Finally, CET maps corresponding to different alloy concentrations are constructed, illustrating the relationship between processing conditions and the resulting grain structures for alloys with different solidification ranges.
机译:耦合的蜂窝自动机构 - 有限差(CA-FD)模型用于在凝固过程中模拟柱状致柱与平衡过渡(CET)的详细树枝状结构演变。研究了在CET上的材料性质(核细胞核中冷却,核液中核的核细胞密度)的影响。模拟结果表明:(1)在较早阶段的等轴谷物,具有较小的临界成核过冷; (2)如果散装液中核的密度增加,则促进了CET; (3)延长合金凝固范围促进CET。最后,构建了与不同合金浓度相对应的CET图,示出了具有不同凝固范围的合金的加工条件和所得晶粒结构之间的关系。

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