3D computer model of the Ag-Cu-Ni T-x-y diagram: verification of sections in the atlas of phase diagrams for lead-free soldering

Author:

Parfenova M. D.1,Vorob'eva V. P.1,Lutsyk V. I.1

Affiliation:

1. Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences

Abstract

Spatial (three-dimensional - 3D) computer model of the T-x-y diagram of the Ag - Cu - Ni system, which is promising for the development of environmentally friendly solders, is presented. The model is constructed on the basis of published data on the binary systems forming this ternary system, the concentration projection of the liquidus surfaces, and four isothermal sections. It is shown that the phase diagram (PD) consists of 14 surfaces and 9 phase regions. The adequacy of the model is confirmed by comparing the isothermal sections and the liquidus projection.

Publisher

Publishing House Belorusskaya Nauka

Subject

Inorganic Chemistry,Organic Chemistry,Chemistry (miscellaneous),Analytical Chemistry

Reference29 articles.

1. Dinsdale A., Watson A., Kroupa A., Vrest’al J., Zemanova A., Vi'zdal J. Atlas of Phase Diagrams for Lead-Free Soldering. COST 531. Vol. 1. Brno, Czech Republic: Vydavatelstvi KNIHAR, 2008. 289 p.

2. Dinsdale A., Kroupa A., Watson A., Vrest’al J., Zemanova A., Broz P. Handbook of High-Temperature Lead-Free Solders: Atlas of Phase Diagrams. COSTMP0602. Vol. 1. Brno, Ceska republika: COST office, Brussels, Belgium, 2012. 218 pp.

3. Watson A. (ed.) Handbook of High-Temperature Lead-Free Solders: Materials Properties. COST Action MP0602. Vol. 2. Brno, Ceska republika: COST office, Brussels, Belgium, 2012. 145 pp.

4. Lutsyk V. I., Vorob'eva V. P. Three-Dimensional Model of Phase Diagram of Au-Bi-Sb System for Clarification of Thermodynamic Calculations. Russian Journal of Physical Chemistry, 2015, vol. 89, no. 10, pp. 1715-1722. https://doi.org/10.1134/S0036024415100192

5. Lutsyk V. I., Vorob'eva V. P., Shodorova S. Ya. Determining the Conditions for Changes of the Three-Phase Reaction Type in a V-Zr-Cr System. Russian Journal of Physical Chemistry, 2015, vol. 89, no. 13, pp. 2331-2338. https://doi.org/10.1134/S0036024415130245

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