Page 62 - Read Online
P. 62
Park et al. J Mater Inf 2023;3:5 https://dx.doi.org/10.20517/jmi.2022.37 Page 25 of 25
65. Dinsdale A. SGTE data for pure elements. Calphad 1991;15:317-425. DOI
66. Gustafson P. A thermodynamic evaluation of Fe-C system. Scand J Metall 1985;14:259-67.
67. Batalin GI, Sudavtsova VS, Kurach VP. Thermodynamic properties of liquid Fe-Sn alloys. Izv Akad Nauk SSSR 1984;4:50-1.
68. Petrushevskiy MS, Esin YuO, Bayev VM, et al. Influence of short-range ordering on the concentration dependence of the enthalpies of
formation of liquid of iron-tin alloys. Russ Metall 1978;1:61-3.
69. Lück R, Predel B. The enthalpy of mixing of liquid iron-tin alloys determined by means of a new high-temperature calorimeter. Z
Metallkd 1985;76:684-6.
70. Wagner S, St. pierre GR. Thermodynamics of the liquid binary iron-tin by mass spectrometry. Metall Trans B 1972;3:2873-8. DOI
71. Maruyama N, Ban-Ya S. Measurement of activities in liquid Fe-Cu, Fe-Cr and Fe-Sn alloys by a transportation method. J Japan Inst
Met Mater 1980;44:1422-31. DOI
72. Eremenko VN, Lukashenko GM, Pritula VL. Thermodyanmic properties of Fe-Sn melts. Russ Metall 1972;1:72-5.
73. Fedorenko AN, Brovkin VG. Vapor pressure of tin and thermodynamic properties of the tin and iron system. Sb Nauchn Tr-Gos
Proektn Nauchno-Issled Inst 1977;3:83-9.
74. Shiraishi SY, and Bell HB. Thermodynamic study of tin smelting. PT. 1. Iron-tin and iron-tin-oxygen alloys. Inst Mining Met Trans
Sect C 1970;79:C120-7.
75. Yazawa A, Koike K. Tin smelting. II. Activity measurements in molten tin-iron alloy. Nippon Kogyo Kaishi 1969;85:39-42. DOI
76. Wang J, Hudon P, Kevorkov D, Chartrand P, Jung I, Medraj M. Thermodynamic and experimental study of the Mg-Sn-Ag-in
quaternary system. J Phase Equilib Diffus 2014;35:284-313. DOI
77. Jannin C, Michel A, Lecocq P. Magnetism and properties of different phases in the Fe-Sn system. Comptes Redus Hebomadaires
Seances Acad Sci 1963;257:1906-7.
78. Zabyr L, Fitzner K. Gibbs free energy of formation of iron antimonide (FeSb ), iron-tin (FeSn), and iron-tin (FeSn ) intermetallic
2
2
phases. Arch Hutn 1984;29:227-33.
79. Wu P, Song J, Yu X, et al. Evidence of spin reorientation and anharmonicity in kagome ferromagnet Fe Sn . Appl Phys Lett
2
3
2021;119:082401. DOI
80. Sales BC, Yan J, Meier WR, Christianson AD, Okamoto S, Mcguire MA. Electronic, magnetic, and thermodynamic properties of the
kagome layer compound FeSn. Phys Rev Mater 2019;3:1-8. DOI
81. Kubaschewski O. Iron binary phase diagrams. 1st ed. Berlin Heidelberg: Springer Science & Business Media; 1982, pp.139-42. DOI
82. Hultgren R, Desai PD, Hawkins DT, et al. Selected values of the thermodynamic properties of binary alloys. Metals Park, Ohio:
American Society for Metals; 1973, pp. 884-7. DOI
83. Hansen M, Anderko K. Constitution of binary alloys. New York: McGraw-Hill; 1958, pp.718-20.
84. Singh M, Bhan S. Contribution to the Fe - Sn system. J Mater Sci Lett 1986;5:733-5. DOI