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Stochastic modeling of columnar dendritic grain growth in weld pool of Al-Cu alloy

机译:Al-Cu合金焊缝中柱状枝晶晶粒长大的随机模拟

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A multi-scale model is used to simulate columnar dendritic growth in TIG (tungsten inert-gas) weld molten pool of Al-Cu alloy. The grain morphologies at the edge of the weld pool are studied. The simulated results indicate that the average primary dendrite spacing changes during the solidification process in the weld pool because of the complicated thermal field, solute diffusion field and competitive growth. And it is shown that the secondary dendrite arms grow insufficiently in the space between dendrite trunks if the primary dendrite spacing is small. And the phenomenon has been explained by analyzing the influence of the solute accumulation on the constitutional undercooling and undercooling gradient when there are two different opposite solute diffusion fields.
机译:使用多尺度模型来模拟Al-Cu合金TIG(钨极惰性气体)焊接熔池中的柱状枝晶生长。研究了熔池边缘的​​晶粒形态。模拟结果表明,由于复杂的热场,溶质扩散场和竞争性增长,焊缝池凝固过程中平均一次枝晶间距会发生变化。结果表明,如果初级枝晶间距较小,则次级枝晶臂在枝晶主干之间的空间中不能充分生长。当存在两个不同的相反溶质扩散场时,通过分析溶质积累对结构过冷和过冷梯度的影响,可以解释这种现象。

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