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二元体系中的溶质截留与无扩散凝固

Solute trapping and diffusionless solidification in a binary system.

作者信息

Galenko Peter

机构信息

German Aerospace Center, Institute of Materials Physics in Space, Cologne 51170, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Sep;76(3 Pt 1):031606. doi: 10.1103/PhysRevE.76.031606. Epub 2007 Sep 27.

Abstract

Numerous experimental data on the rapid solidification of binary systems exhibit the formation of metastable solid phases with initial (nominal) chemical composition. This fact is explained by complete solute trapping leading to diffusionless (chemically partitionless) solidification at a finite growth velocity of crystals. Special attention is paid to developing a model of rapid solidification which describes a transition from chemically partitioned to diffusionless growth of crystals. Analytical treatments lead to the condition for complete solute trapping which directly follows from the analysis of the solute diffusion around the solid-liquid interface and atomic attachment and detachment at the interface. The resulting equations for the flux balance at the interface take into account two kinetic parameters: diffusion speed VDI on the interface and diffusion speed VD in bulk phases. The model describes experimental data on nonequilibrium solute partitioning in solidification of Si-As alloys for the whole range of solidification velocity investigated.

摘要

关于二元体系快速凝固的大量实验数据表明,会形成具有初始(标称)化学成分的亚稳固相。这一事实可通过完全溶质捕获来解释,即在晶体有限生长速度下导致无扩散(化学无偏析)凝固。特别关注开发一种快速凝固模型,该模型描述了从晶体化学偏析生长到无扩散生长的转变。分析处理得出了完全溶质捕获的条件,这直接源于对固 - 液界面周围溶质扩散以及界面处原子附着和脱离的分析。所得的界面通量平衡方程考虑了两个动力学参数:界面上的扩散速度VDI和体相中的扩散速度VD。该模型描述了在所研究的整个凝固速度范围内,Si - As合金凝固过程中非平衡溶质分配的实验数据。

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