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Thermodynamic Modeling and Experimental Investigation of the Mg-Cu-Ni-Y Quaternary System

机译:Mg-Cu-Ni-Y四元体系的热力学建模和实验研究

摘要

In this work, a self-consistent thermodynamic database for the Mg-Cu-Ni-Y system has been constructed by combining the thermodynamic descriptions of the constituent binary and ternary sub-systems. The modified quasichemical model has been used to describe the liquid phase in this system, for the first time, which accounts for the short range ordering. Isothermal sections of the Mg-Cu-Y and Mg-Ni-Y systems at 673 K and Cu-Ni-Y system at 973 K have been constructed experimentally. Diffusion couples and key samples have been employed for establishing the phase equilibria. Microstructural characterizations using scanning electron microscopy (SEM), and phase identification using x-ray diffraction (XRD) and wave dispersive x-ray spectrometer (WDS) have been carried out. Twelve ternary intermetallic compounds have been identified in the Mg-Ni-Y system. Crystallographic prototypes of two of these compounds; 1 (MgNiY4) and 2 (MgNi2Y2) have been found and their lattice parameters have been determined using Rietveld analysis of the XRD patterns. Also, ternary solubility of 3 (MgNi4Y) has been found to be from 9.2 to 25.9 at.% Mg with constant 65 at.% Ni. Ternary solubility of the binary compounds in the Mg-Cu-Y, Mg-Ni-Y and Cu-Ni-Y systems has been determined. A complete mutual solubility between CuY-NiY and Cu4Y-Ni4Y in the Cu-Ni-Y system has been identified. Differential scanning calorimetry (DSC) experiments have been conducted for selected key samples of the Mg-Cu-Y, Mg-Ni-Y and Cu-Ni-Y systems to determine the liquidus and other phase transformation temperatures. These results have been compared with the thermodynamic modeling which showed good agreement. Thermodynamic calculations of the Mg-Cu-Ni system also show consistency with the literature data. ududLiquidus projections of the four ternary systems have been calculated based on the present thermodynamic modeling considering the current experimental results and data from the literature. All four ternary systems have been combined in one database for the Mg-Cu-Ni-Y quaternary.ud
机译:在这项工作中,通过组合组成的二元和三元子系统的热力学描述,建立了Mg-Cu-Ni-Y系统的自洽热力学数据库。修改后的准化学模型首次用于描述该系统中的液相,这说明了短程有序。实验建立了673 K时Mg-Cu-Y和Mg-Ni-Y系统的等温截面以及973 K时的Cu-Ni-Y系统的等温截面。扩散对和关键样品已被用于建立相平衡。已经进行了使用扫描电子显微镜(SEM)的微观结构表征,以及使用X射线衍射(XRD)和波色散X射线光谱仪(WDS)的相识别。在Mg-Ni-Y系统中已鉴定出十二种三元金属间化合物。其中两种化合物的晶体学原型;已经发现1(MgNiY4)和2(MgNi2Y2),并使用X射线衍射图的Rietveld分析确定了它们的晶格参数。另外,发现三元离子的三元溶解度(MgNi4Y)为9.2至25.9 at。%Mg,Ni恒定为65 at。%。已确定二元化合物在Mg-Cu-Y,Mg-Ni-Y和Cu-Ni-Y系统中的三元溶解度。已经确定了在Cu-Ni-Y系统中CuY-NiY和Cu4Y-Ni4Y之间完全互溶。已对Mg-Cu-Y,Mg-Ni-Y和Cu-Ni-Y系统的选定关键样品进行了差示扫描量热(DSC)实验,以确定液相线和其他相变温度。将这些结果与显示出良好一致性的热力学模型进行了比较。 Mg-Cu-Ni系统的热力学计算也显示与文献数据一致。考虑到当前的实验结果和来自文献的数据,已经基于当前的热力学模型计算了四个三元体系的液体投影。所有四个三元系统都已合并到一个Mg-Cu-Ni-Y四元体系的数据库中。

著录项

  • 作者

    Islam Md. Mezbahul;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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