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This article is cited in 2 scientific papers (total in 2 papers)
Thermophysical Properties of Materials
Thermodynamic estimation of the stability of metal and ceramic materials in the binary $\rm Sn$–$20\%~\rm Li$ melt
V. P. Krasin, S. I. Soyustova Moscow Polytechnic University
Abstract:
The temperature dependences of nickel, iron, chromium, molybdenum, and tungsten solubility in a liquid $\rm Sn$–$20\%~\rm Li$ alloy are calculated with the thermodynamic simulation method based on information on the excess Gibbs mixing energies for a liquid phase in the form of polynomial Redlich–Kister expansion for corresponding binary systems. A thermodynamic estimation of the stability of a series of binary and ternary oxides in a liquid $\rm Li_{20}\rm Sn_{80}$ alloy at temperatures of $500$ and $800^{\circ}$C is also performed.
Received: 05.11.2019 Revised: 09.02.2020 Accepted: 10.03.2020
Citation:
V. P. Krasin, S. I. Soyustova, “Thermodynamic estimation of the stability of metal and ceramic materials in the binary $\rm Sn$–$20\%~\rm Li$ melt”, TVT, 58:3 (2020), 365–375; High Temperature, 58:3 (2020), 342–351
Linking options:
https://www.mathnet.ru/eng/tvt11287 https://www.mathnet.ru/eng/tvt/v58/i3/p365
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Abstract page: | 94 | Full-text PDF : | 141 |
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