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Implementation of an antitrapping current for a multicomponent multiphase-field ansatz

机译:多分量多相场ansatz防陷电流的实现

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The benefit of an antitrapping current has been investigated for a multicomponent multiphase-field model based on a double obstacle potential [Eiken et al., Phys. Rev. E 73 (2006) 066122]. Arguments justifying the analytical form of this correction for artificial solute trapping are given using Kim's formalism [Kim, Acta Mat. 55 (2007) 4391 ]. The validity of the model has been tested by comparing the phase-field results with those obtained by a sharp interface model. In particular, the 1D steady state solutions for solidification of a binary Al-Si and a ternary Al-Si-Mg alloy under isothermal conditions with a constant solute concentration at a finite distance from the solidification front have been used for comparison. The front velocity, the liquid concentration profile, and the concentration in solid predicted by the phase-field model with antitrapping compare well with the sharp interface solutions. In addition, for dendritic growth the convergence of tip velocity and local solute concentration at the tip with decreasing interface thickness is demonstrated.
机译:对于基于双势垒势的多分量多相场模型,已经研究了抗俘获电流的好处[Eiken et al。,Phys。 E 73(2006)066122]。使用Kim的形式主义[Kim,Acta Mat。]给出了证明这种校正形式适用于人工溶质捕集的分析形式的论点。 55(2007)4391]。通过将相场结果与尖锐界面模型获得的结果进行比较,测试了模型的有效性。尤其是,在等温条件下,在距凝固前沿有限距离内具有恒定溶质浓度的情况下,用于凝固二元Al-Si和三元Al-Si-Mg合金的一维稳态溶液已用于比较。由相场模型与反俘获预测的前沿速度,液体浓度分布图和固体中的浓度与尖锐的界面溶液比较好。此外,对于树突状生长,随着界面厚度的减小,尖端速度和尖端处的局部溶质浓度也逐渐收敛。

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