Thermodynamic Evaluation of the Cu-In-Zn System. Vassiliev, V. P. & Lysenko, V. A. Journal of Alloys and Compounds, 681:606–612, 2016. doi abstract bibtex Phase equilibria in the Cu-In-Zn system are calculated using a thermodynamic modeling approach. The thermodynamic model parameters for the constituent binaries Cu-In, Cu-Zn and In-Zn are taken from earlier assessments. Thermodynamic descriptions of the ternary liquid and copper-based solutions are obtained based on the experimental thermodynamic and phase equilibria data available in literature for the Cu-In-Zn system. The liquidus surface projection, isothermal sections at 373 and 573 K, as well as vertical sections xCu/xIn =1:2, 1:1, 2:1 and xIn =0.75, 0.5 are calculated.
@article{vassiliev_thermodynamic_2016,
title = {Thermodynamic {Evaluation} of the {Cu}-{In}-{Zn} {System}},
volume = {681},
issn = {0925-8388},
doi = {10.1016/j.jallcom.2016.04.082},
abstract = {Phase equilibria in the Cu-In-Zn system are calculated using a thermodynamic modeling approach. The thermodynamic model parameters for the constituent binaries Cu-In, Cu-Zn and In-Zn are taken from earlier assessments. Thermodynamic descriptions of the ternary liquid and copper-based solutions are obtained based on the experimental thermodynamic and phase equilibria data available in literature for the Cu-In-Zn system. The liquidus surface projection, isothermal sections at 373 and 573 K, as well as vertical sections xCu/xIn =1:2, 1:1, 2:1 and xIn =0.75, 0.5 are calculated.},
language = {english},
journal = {Journal of Alloys and Compounds},
author = {Vassiliev, V. P. and Lysenko, V. A.},
year = {2016},
pages = {606--612}
}
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