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首页> 外文期刊>Computational Materials Science >The cluster-plus-glue-atom models of solid solution CuNi alloys: A first-principles study
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The cluster-plus-glue-atom models of solid solution CuNi alloys: A first-principles study

机译:固体解决方案CUNI合金的聚类加胶 - 原子模型:一项研究

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The solid solution alloys containing short-range order (SRO) structure, such as CuNi alloys, are not well structurally described using conventional quasi-disordered models. Based on the first-principles calculations, the optimal cluster-plus-glue-atom (CPGA) models of six typical solid solution CuNi alloys were demonstrated. These CPGA models are better to be used to describe the microstructure of the six CuNi alloys at the atomic scale from the viewpoint of energy. Our further study shown that the stabilities of CPGA models are highly related to the symmetry of initial CPGA models and the aggregation degree of solute atoms in CPGA models. In the condition of low solute Ni concentration, the stability of CPGA model is mostly determined by the symmetry of initial CPGA model, the CPGA model with high symmetry is more stable. As the concentration of solute Ni increasing, the aggregation degree of solute Ni atoms in CPGA models plays more and more important role. The CPGA model with higher aggregation degree of solute Ni is more stable. The simple selection method of optimal CPGA models, therefore is proposed, and which can be extended to other bielement solid solution AB alloys with positive mixing enthalpy of A-B. Using the selected CPGA models, we found the third additive atoms having negative mixing enthalpy with solvent and solute atoms prefer to reside the central site of characteristic principal cluster (CPC) of CPGA, and thereby enhancing the stability of alloys. Our studies provide a distinctive perspective to select the optimal CPGA models of solid solution alloys containing SRO structure and design alloy using the optimal CPGA model. (C) 2017 Elsevier B.V. All rights reserved.
机译:含有诸如CUNI合金的含有短级顺序(SRO)结构的固溶合金,不受常规的准无序模型在结构上进行结构。基于第一原理计算,证明了六种典型固溶综合合金的最佳聚类加胶原(CpGA)模型。这些CPGA模型更好地用于从能量的观点来描述原子秤上的六个CUNI合金的微观结构。我们的进一步研究表明,CPGA模型的稳定性与初始CPGA模型的对称性和CPGA模型中的溶质原子的聚集度高度相关。在低溶质Ni浓度的条件下,CPGA模型的稳定性主要由初始CPGA模型的对称性决定,具有高对称性的CPGA模型更稳定。随着溶质Ni的浓度增加,CPGA模型中溶质Ni原子的聚集度起着越来越重要的作用。溶质Ni较高聚集度的CPGA模型更稳定。因此,提出了最佳CPGA模型的简单选择方法,并且可以扩展到具有A-B的阳性混合焓的其他双体固溶体AB合金。使用所选的CPGA模型,我们发现具有溶剂和溶质原子的负混合焓的第三加料原子较喜欢的CPGA的特征主簇(CPC)的中心部位,从而提高合金的稳定性。我们的研究提供了一种独特的观点,可选择使用最佳CPGA模型选择含有SRO结构和设计合金的固体溶液合金的最佳CpGA型号。 (c)2017 Elsevier B.v.保留所有权利。

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