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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Computational study of atomic mobility in hcp Mg-Al-Zn ternary alloys
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Computational study of atomic mobility in hcp Mg-Al-Zn ternary alloys

机译:hcp Mg-Al-Zn三元合金中原子迁移率的计算研究

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摘要

The experimental data in the literature for the hcp phase of the Mg-Al-Zn ternary system have been critically reviewed. Based on the concentration profiles from the literature, the diffusion coefficients have been re-extracted using the Hall method for the impurity diffusion, and the Sauer-Freise and the Whittle-Green strategies for interdiffusion coefficients in binary and ternary systems, respectively. Moreover, extra interdiffusion coefficients were obtained from the "Darken-type" couples, which present relative maxima or/and minima at the concentration profiles. This information was assessed to obtain an atomic mobility database, by means of DICTRA software in conjunction with the CALPHAD thermodynamic description that is able to reproduce the diffusion couple experiments. Comprehensive comparisons between the calculated results and experimental values show an excellent agreement not only for the diffusion coefficient data, but also for the concentration profiles and the diffusion paths. (C) 2016 Elsevier Ltd. All rights reserved.
机译:文献中对Mg-Al-Zn三元体系的hcp相的实验数据进行了严格审查。根据文献中的浓度分布,分别使用霍尔方法对杂质扩散,Sauer-Freise和Whittle-Green策略分别提取了二元和三元系统中的扩散系数,从而得出了扩散系数。此外,从“ Darken-type”对获得了额外的互扩散系数,其在浓度曲线上呈现出相对的最大值或最小值。通过DICTRA软件结合CALPHAD热力学描述来评估此信息以获得原子迁移率数据库,该模型能够重现扩散对实验。计算结果和实验值之间的全面比较表明,不仅对于扩散系数数据,而且对于浓度分布和扩散路径,都具有极好的一致性。 (C)2016 Elsevier Ltd.保留所有权利。

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