Thermodynamic Assessment of the Miscibility Gaps and the Metastable Liquidi in the Zn–Bi, Zn–Pb, and Zn–Tl Systems

S. S. Kim, T. Sanders
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引用次数: 16

Abstract

Abstract In monotectic systems, there are thermodynamic restrictions on compositions and temperatures below the monotectic where the equilibrium solid cannot form directly from the undercooled homogeneous liquid. In this region, the solid can form only after liquid–liquid phase separation has occurred. As suggested by earlier research, the thermodynamic restrictions on the solidification process may be useful to control the micro structure of rapidly solidified materials. Thus, it could be commercially important to understand the thermodynamic limitations on the formation of the solid in monotectic systems. The liquid miscibility gaps, metastable liquidi, and spinodal curves in the binary Zn–Bi, Zn–Pb, and Zn–Tl systems were assessed by using a subregular solution model to describe the Gibbs energies of the liquid phases. The present results were compared and discussed with other experimental and assessed data available in the literature.
Zn-Bi, Zn-Pb和Zn-Tl体系中混溶间隙和亚稳液相的热力学评价
在单晶体系中,在组分和温度低于单晶的情况下,平衡固体不能直接由过冷的均质液体形成,存在热力学限制。在这个区域,只有液-液相分离发生后,才会形成固体。正如先前的研究表明,对凝固过程的热力学限制可能有助于控制快速凝固材料的微观组织。因此,了解单晶体系中固体形成的热力学限制可能具有重要的商业意义。采用亚规则溶液模型描述液相的吉布斯能,评价了二元Zn-Bi、Zn-Pb和Zn-Tl体系的液相混相间隙、亚稳液相曲线和自旋曲线。目前的结果与文献中其他实验和评估数据进行了比较和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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