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Numerical study of steady state melting of a binary alloy

机译:二元合金稳态熔化的数值研究

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Using an extension of a recently developed model describing phase transformations based on a sharp interface [M. Buchmann, M. Rettenmayr, Scripta Mater. 57 (2007) 169], steady-state melting of an Al-Cu alloy is numerically modelled. The conditions are varied such that the 'contact conditions' range from local equilibrium to pronounced deviations thereof, corresponding to 'solute trapping' conditions during solidification. The rigorously derived model that includes realistic free energies ensures physical consistency and allows for the treatment of non-ideal systems. Aspects of the asymmetry between melting and solidification become apparent in the contact conditions, i.e. the concentrations at the interface in the liquid and solid phase, respectively, at elevated velocities.
机译:使用最近开发的模型的扩展来描述基于尖锐界面的相变[M. Buchmann,M。Rettenmayr,Scripta Mater。文献[57(2007)169]中,对Al-Cu合金的稳态熔融进行了数值模拟。条件发生变化,以使“接触条件”从局部平衡到明显偏离,范围与固化期间的“溶质捕获”条件相对应。包含真实自由能的严格推导模型可确保物理一致性,并允许处理非理想系统。在接触条件下,即在液相和固相的界面处,在升高的速度下的浓度,熔化和固化之间的不对称性变得显而易见。

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