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Onsager approach to the one-dimensional solidification problem and its relation to the phase-field description

机译:一维凝固问题的Onsager方法及其与相场描述的关系

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摘要

We give a general phenomenological description of the steady-state 1D front propagation problem in two cases: the solidification of a pure material and the isothermal solidification of two-component dilute alloys. The solidification of a pure material is controlled by the heat transport in the bulk and the interface kinetics. The isothermal solidification of two-component alloys is controlled by the diffusion in the bulk and the interface kinetics. We find that the condition of positive-definiteness of the symmetric Onsager matrix of interface kinetic coefficients still allows an arbitrary sign of the slope of the velocity-concentration line near the solidus in the alloy problem or of the velocity-temperature line in the case of solidification of a pure material. This result offers a very simple and elegant way to describe the interesting phenomenon of a possible non-single-value behavior of velocity versus concentration that has previously been discussed by different approaches. We also discuss the relation of this Onsager approach to the thin-interface limit of the phase-field description.
机译:我们在两种情况下给出稳态一维前传播问题的一般现象学描述:纯材料的凝固和两组分稀合金的等温凝固。纯材料的固化受整体中的热传递和界面动力学控制。两组分合金的等温凝固是由整体中的扩散和界面动力学控制的。我们发现,界面动力学系数的对称Onsager矩阵的正定条件仍然允许合金问题中固相线附近的速度集中线或速度-温度线的斜率具有任意符号。纯材料的凝固。该结果提供了一种非常简单而优雅的方法来描述有趣的现象,即速度与浓度可能发生的非单值行为,先前已通过不同方法进行了讨论。我们还将讨论此Onsager方法与相场描述的瘦接口限制之间的关系。

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  • 作者

    Brener E.A.; Temkin D.E.;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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