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Numerical Simulation of Isothermal Dendritic Growth by Phase-field Model

机译:相场模型对等温枝晶生长的数值模拟

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The phase-field model is applied to simulate microstructural evoluting during isothermal dendritic growth of the δ-phase in undercooled Fe-c liquid. The parameters of phase-field equation are determined by a thin interface limit condition. Realistic dendritic structures at various temperatures and compositions of the alloy can be obtained using the phase-field model with the thin interface limit condition. The calculated results show various solidification features consistent with our experience. The calculated tip radius, the velocity and the concentration at the interface are compared with the predicted values from the conventional dendritic growth theory using lvantsov solution and marginal stability criterion.
机译:将相场模型用于模拟过冷Fe-c液体中δ相的等温树枝状生长过程中的微观结构演化。相场方程的参数由薄界面极限条件确定。使用具有薄界面极限条件的相场模型,可以获得在各种温度和合金成分下的实际树枝状结构。计算结果表明各种凝固特征与我们的经验一致。使用lvantsov溶液和边际稳定性准则,将计算的尖端半径,界面处的速度和浓度与常规树突生长理论的预测值进行比较。

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