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Application of ab initio electronic structure calculations for prediction of phase equilibria in superaustenitic steels

机译:从头算电子结构计算在超奥氏体钢相平衡预测中的应用

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Our recent results of the application of ab initio electronic structure calculations to the modeling of phase equilibria in binary and ternary transition-metal systems containing complex intermetallic phases (Laves phase, sigma phase) are summarized. As examples, the application of total energy differences calculated by ab initio methods for the sigma phase included in the CALPHAD treatment of the Cr-Mo and Cr-Fe-Mo systems is presented. The description of the sigma phase, based on the above-mentioned total energy differences, for the systems Cr-Fe, Cr-Ni, Fe-Ni, Fe-Mo, Cr-Mo, and for Cr-Fe-Ni and Cr-Fe-Mo systems has been included in the thermodynamic database for the calculation of phase equilibria in steels, developed earlier by some of the authors. Theoretical results obtained by using the new and older models are compared with new experimental data for superaustenitic (high-nickel-chromium) steels. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们总结了从头算电子结构计算到包含复杂金属间相(Laves相,sigma相)的二元和三元过渡金属系统相平衡建模的最新结果。作为示例,介绍了从头算方法计算出的总能量差对Cr-Mo和Cr-Fe-Mo系统的CALPHAD处理中所包括的sigma相的应用。基于上述总能量差的σ-相,Cr-Fe,Cr-Ni,Fe-Ni,Fe-Mo,Cr-Mo和Cr-Fe-Ni和Cr- Fe-Mo系统已经包括在热力学数据库中,用于计算钢中的相平衡,这是一些作者较早开发的。使用新的和较旧的模型获得的理论结果与超级奥氏体(高镍铬)钢的新实验数据进行了比较。 (c)2006 Elsevier B.V.保留所有权利。

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