Fürtauer S, Li D, Cupid D, Flandorfer H
Institute of Inorganic Chemistry/Materials Chemistry, University of Vienna, Vienna, Austria.
Karlsruher Institut für Technologie, Institut für Angewandte Materialien, Karlsruhe, Germany.
Intermetallics (Barking). 2013 Mar;34:142-147. doi: 10.1016/j.intermet.2012.10.004.
Phase diagram investigation of the Cu-Sn system was carried out on twenty Cu-rich samples by thermal analysis (DTA), metallographic methods (EPMA/SEM-EDX) and crystallographic analysis (powder XRD, high temperature powder XRD). One main issue in this work was to investigate the high temperature phases beta (W-type) and gamma (BiF-type) and to check the phase relations between them. In the high temperature powder XRD experiments the presence of the two-phase-field between the beta- and the gamma-phase could not be confirmed. Detailed study of primary literature together with our experimental results leads to a new phase diagram version with a higher order transformation between these two high temperature phases. The present work is designated as part I of our joint publication. The new findings described here have been included into a completely new thermodynamic assessment of the Cu-Sn phase diagram which is presented in part II.
通过热分析(差示扫描量热法)、金相方法(电子探针微区分析/扫描电子显微镜-能谱仪)和晶体学分析(粉末X射线衍射、高温粉末X射线衍射),对20个富铜样品进行了铜-锡体系的相图研究。这项工作的一个主要问题是研究高温相β(W型)和γ(BiF型),并检验它们之间的相关系。在高温粉末X射线衍射实验中,未能证实β相和γ相之间存在两相区。对原始文献的详细研究以及我们的实验结果得出了一个新的相图版本,其中这两个高温相之间存在更高阶的转变。本工作被指定为我们联合出版物的第一部分。这里描述的新发现已被纳入铜-锡相图全新的热力学评估中,该评估将在第二部分呈现。