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The morphological stability of dendritic growth from the binary alloy melt with an external flow

机译:二元合金熔体在外流作用下枝晶生长的形态稳定性

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The morphological stability of dendritic growth from the binary alloy melt with an external flow is studied by means of the matched asymptotic expansion method and multiple variable expansion method. The uniformly valid asymptotic solution is obtained for the case of the large Schmidt number. The analytical result reveals that the stability of dendritic growth depends on a critical stability number above which dendritic growth is stable. The selection condition of dendritic growth determines the Peclet number, tip growth velocity, tip radius and oscillation frequency, which is significantly affected by the external flow. The stability mechanism of dendritic growth in the binary alloy melt with the external flow remains the same as that in pure melt In the binary alloy melt with the external flow the solute concentration destabilizes the dendritic growth system. The numerical computation for various growth conditions demonstrates the variations of the critical stability number, tip growth velocity, tip radius, and oscillatory frequency with the undercooling, external flow and morphological number.
机译:通过匹配渐近展开法和多变量展开法研究了二元合金熔体在外流作用下枝晶生长的形态稳定性。对于较大的施密特数,可获得一致有效的渐近解。分析结果表明,树突生长的稳定性取决于临界稳定性数,高于该临界稳定度时树突生长是稳定的。树突生长的选择条件决定了Peclet数,叶尖生长速度,叶尖半径和振荡频率,这受外部流动的影响很大。具有外流的二元合金熔体中的树枝状晶体生长的稳定机理与纯熔体中的相同。在具有外流的二元合金熔体中,溶质浓度使树枝状生长系统不稳定。各种生长条件的数值计算表明,临界稳定度数,尖端生长速度,尖端半径和振荡频率随过冷度,外流和形态数的变化。

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