Thermodynamics of Molten MnS–CrS–FeS System at 1843 K
Phase equilibria in Fe–Cr–Mn–S quaternary system at 1843 K were investigated experimentally. Two liquid phases: molten metal alloy phase and molten sulfide phase were in equilibrium in this system at 1843 K. The equilibrium relations between molten metal alloy and sulfide phases were experimentally...
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Published in | ISIJ International Vol. 61; no. 9; pp. 2355 - 2359 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
The Iron and Steel Institute of Japan
15.09.2021
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Abstract | Phase equilibria in Fe–Cr–Mn–S quaternary system at 1843 K were investigated experimentally. Two liquid phases: molten metal alloy phase and molten sulfide phase were in equilibrium in this system at 1843 K. The equilibrium relations between molten metal alloy and sulfide phases were experimentally measured. By using metal/sulfide equilibrium method, activity of constituents in molten MnS–CrS–FeS sulfide phase were determined. By utilizing regular solution model, activity curves of constituents in sulfide phase were estimated. |
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AbstractList | Phase equilibria in Fe–Cr–Mn–S quaternary system at 1843 K were investigated experimentally. Two liquid phases: molten metal alloy phase and molten sulfide phase were in equilibrium in this system at 1843 K. The equilibrium relations between molten metal alloy and sulfide phases were experimentally measured. By using metal/sulfide equilibrium method, activity of constituents in molten MnS–CrS–FeS sulfide phase were determined. By utilizing regular solution model, activity curves of constituents in sulfide phase were estimated. |
ArticleNumber | ISIJINT-2020-741 |
Author | Miki, Takahiro Lu, Yan |
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Cites_doi | 10.1007/BF02654918 10.1016/0040-6031(88)87198-3 10.1179/msc.1974.8.1.298 10.2320/jinstmet1952.27.7_299 10.2355/isijinternational.ISIJINT-2020-740 10.1361/105497199770335749 10.2355/isijinternational.40.182 10.1515/HTMP.2000.19.3-4.197 |
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References | 6) M. Hino and K. Ito: Thermodynamic Data for Steelmaking, Tohoku University Press, Sendai, (2010), 168. 1) H. Kaneko, T. Nishizawa and K. Tamaki: J. Jpn. Inst. Met., 27 (1963), 299 (in Japanese). 9) H. Ohtani, K. Oikawa and K. Ishida: High Temp. Mater. Process., 19 (2000), 197. 3) K. Oikawa, S.-I. Sumi and K. Ishida: J. Phase Equilib., 20 (1999), 215. 8) M. Hillert: Thermochim. Acta, 129 (1988), 71. 2) C. W. Kovach, R. G. Wells and A. Moskowitz: Trans. ASM, 61 (1968), 575. 7) G. K. Sigworth and J. F. Elliott: Met. Sci., 8 (1974), 298. 11) K. Oikawa, H. Mitsui, H. Ohtani and K. Ishida: ISIJ Int., 40 (2000), 182. 5) C. Wagner: Thermodynamics of Alloys, Addison-Wesley, Cambridge, MA, (1952), 47. 4) Y. Lu and T. Miki: ISIJ Int. 61 (2021), 2345. 10) M. Hillert and L.-I. Staffansson: Metall. Trans. B, 7 (1976), 203. 11 1 2 3 4 5 6 7 8 9 10 |
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Snippet | Phase equilibria in Fe–Cr–Mn–S quaternary system at 1843 K were investigated experimentally. Two liquid phases: molten metal alloy phase and molten sulfide... |
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Title | Thermodynamics of Molten MnS–CrS–FeS System at 1843 K |
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