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Modeling of Thermodynamic Properties and Phase Equilibria for the Cu-Mg Binary System

机译:Cu-Mg二元体系的热力学性质和相平衡建模

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摘要

The phase equilibria associated with the binary Cu-Mg system are analyzed by applying results from first-principles calculations to a general solution thermodynamics treatment. Differing from previously reported models, we employ a four-species association model for the liquid, while the terminal and intermediate solid phases are modeled as substitutional solutions with one or two sublattices, respectively. The zero-Kelvin enthalpies of formation for the intermediate compounds, Cu2Mg-C15 (cF24) and CuMg2-Cb (oF48) are computed using the Vienna Ab-initio Simulation Package (VASP). The Gibbs free energy functions for the individual phases are evaluated, and the resulting binary phase diagram is presented over the full composition range. While the phase diagram we propose exhibits only modest deviation from previously reported models of phase equilibria, our treatment provides better agreement with experimental reports of heat capacity and enthalpy of mixing, indicating a more self-consistent thermodynamic description of this binary system.
机译:通过将第一性原理计算的结果应用于一般溶液热力学处理,分析了与二元Cu-Mg系统相关的相平衡。与先前报道的模型不同,我们对液体采用四种缔合模型,而末端固相和中间固相分别建模为具有一个或两个亚晶格的替代溶液。中间化合物Cu2Mg-C15(cF24)和CuMg2-Cb(oF48)的零开尔文生成焓是使用Vienna Ab-initio模拟软件包(VASP)计算的。评估了各个相的吉布斯自由能函数,并在整个组成范围内给出了二元相图。虽然我们提出的相图仅显示出与先前报道的相平衡模型相差不大的偏差,但我们的处理方法与热容量和混合焓的实验报告提供了更好的一致性,表明该二元系统的热力学描述更加自洽。

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