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TVT, 2010, Volume 48, Issue 2, Pages 206–209 (Mi tvt710)  

This article is cited in 9 scientific papers (total in 9 papers)

Thermophysical Properties of Materials

The density and interdiffusion coefficients of bismuth-tin melts of eutectic and near-eutectic composition

R. A. Khairulina, S. V. Stankusa, R. N. Abdullaevb, V. M. Skljarchukc

a S.S. Kutateladze Institute of Thermophysics, Siberian Division of the Russian Academy of Sciences
b Novosibirsk State University
c Ivan Franko State University of L'viv

Abstract: The method of gamma-raying of samples by a narrow beam of gamma radiation is used to investigate the temperature dependences of the density of bismuth-tin liquid alloys, which contain $30.0$, $44.0$, and $54.0$ at.$%$ Bi, at temperatures from the liquidus line to $920$ K. The density jump in the case of solid-liquid phase transition is directly measured for the first time for an alloy of eutectic composition ($44.0$ at.$%$ Bi). The temperature and concentration dependences of the thermal properties of the liquid Bi–Sn system are constructed. The kinetics of homogenization are studied of melts with average composition of $44.0$ and $54.0$ at.$%$ Bi at temperatures from $550$ to $850$ K. The interdiffusion coefficients are determined from the results of these experiments.

Full text: PDF file (394 kB)

English version:
High Temperature, 2010, 48:2, 188–191

Bibliographic databases:

Document Type: Article
UDC: 536.41:669.65'76+532.72:669.65'76
PACS: 61.25.Mv; 65.20.-w; 66.10.-x
Received: 24.02.2009

Citation: R. A. Khairulin, S. V. Stankus, R. N. Abdullaev, V. M. Skljarchuk, “The density and interdiffusion coefficients of bismuth-tin melts of eutectic and near-eutectic composition”, TVT, 48:2 (2010), 206–209; High Temperature, 48:2 (2010), 188–191

Citation in format AMSBIB
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\paper The density and interdiffusion coefficients of bismuth-tin melts of eutectic and near-eutectic composition
\jour TVT
\yr 2010
\vol 48
\issue 2
\pages 206--209
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\jour High Temperature
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    2. Khairulin R.A., Stankus S.V., Abdullaev R.N., Morozov V.A., “The Interdiffusion in Sodium-Lead Melts of Compositions From 2.5 to 41.1 at.% Pb”, J. Phase Equilib. Diffus., 33:5 (2012), 369–374  crossref  isi  elib
    3. S. V. Stankus, R. A. Khairulin, V. G. Martynets, P. P. Bezverkhii, “Studies of the thermophysical properties of substances and materials at the Novosibirsk Scientific Center of the Siberian Branch of the Russian Academy of Sciences, 2002–2012”, High Temperature, 51:5 (2013), 695–711  mathnet  crossref  crossref  isi  elib  elib
    4. Chen W.-M., Zhang L.-J., Liu D.-D., Du Y., Tan Ch.-Yu., “Diffusivities and Atomic Mobilities of Sn-Bi and Sn-Pb Melts”, J. Electron. Mater., 42:6 (2013), 1158–1170  crossref  adsnasa  isi  elib
    5. Khairulin R.A., Abdullaev R.N., Stankus S.V., “Plotnost troinogo splava vismut-indii-olovo evtekticheskogo sostava v zhidkom sostoyanii i v oblasti plavleniya-kristallizatsii”, Vestnik novosibirskogo gosudarstvennogo universiteta. seriya: fizika, 8:1 (2013), 104–106  elib
    6. Gibbs P.J., Imhoff S.D., Morris C.L., Merrill F.E., Wilde C.H., Nedrow P., Mariam F.G., Fezzaa K., Lee W.-K., Clarke A.J., “Multiscale X-Ray and Proton Imaging of Bismuth-Tin Solidification”, JOM, 66:8 (2014), 1485–1492  crossref  isi
    7. Hooper R.J., Davis C.G., Johns P.M., Adams D.P., Hirschfeld D., Nino J.C., Manuel M.V., “Prediction and Characterization of Heat-Affected Zone Formation in Tin-Bismuth Alloys Due To Nickel-Aluminum Multilayer Foil Reaction”, J. Appl. Phys., 117:24 (2015), 245104  crossref  isi  elib
    8. Theodossiadis G.D., Zaeh M.F., “Study of the Heat Affected Zone Within Metals Joined By Using Reactive Multilayered Aluminum-Nickel Nanofoils”, Prod. Eng.-Res. Dev., 11:4-5 (2017), 401–408  crossref  isi  scopus
    9. Astafieva I.M., Gerasimov D.N., Makseev R.E., International Conference Problems of Thermal Physics and Power Engineering (Ptppe-2017), Journal of Physics Conference Series, 891, IOP Publishing Ltd, 2017  crossref  isi  scopus
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