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Articles

Temperature-Dependent Mixing behaviours of Bi -Mg Liquid Alloys

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Pages 918-931 | Received 03 Nov 2020, Accepted 09 Dec 2020, Published online: 24 Dec 2020

References

  • Koirala I, Jha IS, Singh BP, et al. Thermodynamic, transport and surface properties in In-Pb liquid alloys. Phys B Condens Matter. 2013;423:49–53.
  • Awe OE. Thermodynamic investigation of thermophysical properties of thallium-based liquid alloys. Phys Chem Liq. 2019;57:296–310.
  • Bhatia AB, Hargrove WH. Concentration fluctuations and thermodynamic properties of some compound forming binary molten systems. Phys Rev B. 1974;10:3186–3196.
  • Akinlade O, Singh RN, Sommer F. Thermodynamics of liquid Al-Fe alloys. J Alloys Compd. 2000;299:163–168.
  • Bhatia AB, Singh RN, Quasi-lattice A. Theory for compound forming molten alloys. Phys Chem Liq. 1984;13:177–190.
  • Novakovic R, Ricci E, Gnecco F. Surface and transport properties of Au – in liquid alloys. Surf Sci. 2006;600:5051–5061.
  • Jha IS, Koirala I, Singh BP, et al. Concentration dependence of thermodynamic, transport and surface properties in Ag–Cu liquid alloys. Appl Phys A. 2014. DOI:https://doi.org/10.1007/s00339-014-8282-x
  • Adhikari D, Jha IS, Singh BP. Thermodynamic and microscopic structure of liquid Cu-Sn alloys. Phys B Condens Matter. 2010;405:1861–1865.
  • Koirala I, Singh BP, Jha IS. Theoretical assessment on segregating nature of liquid In–Tl alloys. J Non Cryst Solids. 2014;398:26–31.
  • Singh BP, Koirala I, Jha IS, et al. The segregating nature of Cd-Pb liquid binary alloys. Phys Chem Liq. 2014;52:457–470.
  • Prasad LC, Singh RN. Surface segregation and concentration fluctuation at the liquid-vapor interface of molten Cu-Ni alloys. Phys Rev B. 1991;44:768–771.
  • Hultgren R, Desai PD, Hawkins DT, et al. Selected values of the thermodynamic properties of binary alloys. Metal Park, Ohio: American Society for Metals; 1973.
  • Jung I-H, Kang D-H, Park W-J, et al. Thermodynamic modeling of the Mg-Si-Sn system. Calphad. 2007;31:192–200.
  • Paliwal M, Jung I-H. Thermodynamic modeling of the Mg-Bi and Mg-Sb binary systems and short-range-ordering behavior of the liquid solutions. Calphad. 2009;33:744–754.
  • Fang D, Sun Z, Li Y, et al. Preparation, microstructure and thermal properties of Mg-Bi alloys as phase change materials for thermal energy storage. Appl Therm Eng. 2016;92:187–193.
  • Chunju NIU, Changrong LI, Zhenmin DU, et al. Thermodynamic assessment of the Bi-Mg binary system. Acta Metall Sin. 2012;25(1):19–28.
  • Butler JAV. The thermodynamics of the surfaces of solutions. R Soc A. 1932:348–375. https://doi.org/10.1098/rspa.1983.0054
  • Moelwyn-Hughes EA. Physical chemistry. Second ed. Oxford: Pergamon; 1964.
  • Bhatia AB, Thornton DE. Structural aspects of the electrical resistivity of binary alloys. Phys Rev B. 1970;2:3004–3012.
  • Bhatia AB, Hargrove WH, Thornton DE. Concentration fluctuations and partial structure factors of compound-forming binary molten alloys. Phys Rev B. 1974;9:435–444.
  • Warren BE. X-ray diffraction. New York: Dover Publication; 1990.
  • Cowley JM. An approximate theory of order in alloys. Phys Rev. 1950;77:669–675.
  • Singh RN, Pandey DK, Sinha S, et al. Thermodynamic properties of molten salt solutions. Phys B. 1987;145:358–364.
  • Brandes EA, Brook GB. 1992. Smithells metals reference book. 7th ed. Jordan Hill, Oxford: Butterw orth-Heinemann Linacre House. DOI:https://doi.org/10.1016/B978-075067509-3/50014-2.
  • Darken LS, Gurry RW. Physical chemistry of metals. New York: McGraw Hill; 1953.

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