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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Modeling solute segregation in grain boundaries of binary substitutional alloys: Effect of excess volume
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Modeling solute segregation in grain boundaries of binary substitutional alloys: Effect of excess volume

机译:模拟二元替代合金晶界中的溶质偏析:过剩体积的影响

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The effect of excess volume in grain boundary (GB) on GB solute segregation was quantitatively evaluated by means of thermodynamic modeling. Helmholtz free energies of bulk (grain interior) and GBs in binary substitutional systems with fcc (face centered cubic) and bcc (body centered cubic) crystal structures were derived as functions of composition, temperature and atomic volume by applying Embedded-atommethod (EAM) to standard thermodynamic relations under random site occupation assumption. The equilibrium solute distribution between GBs and bulk was then obtained in terms of the parallel tangent construction between bulk and GB phases' Helmholtz free energy curves. By modeling the Cu-Ag (fcc) and W-Nb (bcc) systems, an enhanced GB segregation with increased GB excess volume was predicted. The segregation enthalpy and the solute enrichment ratio were further calculated, showing good agreements with the experimental and simulated results. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过热力学模型定量评估了晶界(GB)中过量体积对GB溶质偏析的影响。通过应用嵌入式原子方法(EAM)推导了具有fcc(面心立方)和bcc(体心立方)晶体结构的二元替代系统中的本体(晶粒内部)和GBs的亥姆霍兹自由能作为成分,温度和原子体积的函数在随机场所占领假设下达到标准热力学关系。然后,根据块体和GB相的亥姆霍兹自由能曲线之间的平行切线结构,获得了GBs和块体之间的平衡溶质分布。通过对Cu-Ag(fcc)和W-Nb(bcc)系统进行建模,可以预测GB偏析的增强和GB过量体积的增加。进一步计算了分离焓和溶质富集率,与实验和模拟结果吻合良好。 (C)2016 Elsevier B.V.保留所有权利。

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