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Published in: Journal of Iron and Steel Research International 2/2018

01-02-2018 | Original Paper

Critical assessment of three kinds of activity coefficients of carbon and related mixing thermodynamic functions of Fe–C binary melts based on atom–molecule coexistence theory

Authors: Xue-min Yang, Jin-yan Li, Fang-jia Yan, Dong-ping Duan, Jian Zhang

Published in: Journal of Iron and Steel Research International | Issue 2/2018

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Abstract

Raoultian activity coefficients \({\gamma}_{\text{C}}^{0}\) of C in infinitely dilute Fe–C binary melts at temperatures of 1833, 1873, 1923, and 1973 K have been determined from the converted mass action concentrations \(N_{\text{C}}^{\prime}\) of C in Fe–C binary melts by the developed AMCT-N i model based on the atom–molecule coexistence theory (AMCT). The obtained expression of \(\gamma_{\text{C}}^{0}\) by the developed AMCT-N i model has been evaluated to be accurate based on the reported ones from the literature. Meanwhile, three activity coefficients \(\gamma_{\text{C}}\), \(f_{{\%,{\text{ C}}}}\), and \(f_{\text{H, C}}\) of C coupled with activity \(a_{\text{R, C}}\) or \(a_{{\%,{\text{ C}}}}\) or \(a_{\text{H, C}}\) have been obtained by the developed AMCT-N i model and assessed through comparing with the predicted ones by other models from the literature. The first-order activity interaction coefficients \(\varepsilon_{\text{C}}^{\text{C}}\), \(e_{\text{C}}^{\text{C}}\), and \(h_{\text{C}}^{\text{C}}\) related to \(\gamma_{\text{C}}\), \(f_{{\%,{\text{ C}}}}\), and \(f_{\text{H, C}}\) are also determined and assessed in comparison with the reported ones from the literature. Furthermore, the integral molar mixing thermodynamic functions such as \(\Delta_{\text{mix}} H_{{{\text{m, Fe}} - {\text{C}}}}\), \(\Delta_{\text{mix}} S_{{{\text{m, Fe}} - {\text{C}}}}\), and \(\Delta_{\text{mix}} G_{{{\text{m, Fe}} - {\text{C}}}}\) of Fe–C binary melts over a temperature range from 1833 to 1973 K have been determined and evaluated to be valid based on the determined ones from the literature.
Literature
[1]
go back to reference J.Y. Zhang, Metallurgical Physicochemistry, Metallurgical Industry Press, Beijing, 2004. J.Y. Zhang, Metallurgical Physicochemistry, Metallurgical Industry Press, Beijing, 2004.
[2]
go back to reference X.H. Huang, Principles of Ironmaking and Steelmaking, third edition, Metallurgical Industry Press, Beijing, 2005. X.H. Huang, Principles of Ironmaking and Steelmaking, third edition, Metallurgical Industry Press, Beijing, 2005.
[3]
go back to reference S.K. Wei, Thermodynamics of Metallurgical Processes, Science Press, Beijing, 2010. S.K. Wei, Thermodynamics of Metallurgical Processes, Science Press, Beijing, 2010.
[4]
go back to reference X.M. Yang, J.Y. Li, P.C. Li, M. Zhang, J. Zhang, Steel Res. Int. 85 (2014) 164-206.CrossRef X.M. Yang, J.Y. Li, P.C. Li, M. Zhang, J. Zhang, Steel Res. Int. 85 (2014) 164-206.CrossRef
[5]
go back to reference X.M. Yang, J.Y. Li, M.F. Wei, J. Zhang, Metall. Mater. Trans. B 47 (2016) 174–206.CrossRef X.M. Yang, J.Y. Li, M.F. Wei, J. Zhang, Metall. Mater. Trans. B 47 (2016) 174–206.CrossRef
[7]
[8]
go back to reference K. Sanbongi, M. Ohtani, Sci. Rep. Res. Inst. Tohoku Univ. Ser. A 5 (1953) 263–270. K. Sanbongi, M. Ohtani, Sci. Rep. Res. Inst. Tohoku Univ. Ser. A 5 (1953) 263–270.
[11]
[12]
go back to reference T. Syu, A.Y. Polyakov, A.M. Samarin, Izv. V. U. Z. Chern. Met. 2 (1959) 3–12. T. Syu, A.Y. Polyakov, A.M. Samarin, Izv. V. U. Z. Chern. Met. 2 (1959) 3–12.
[13]
[16]
go back to reference T. Mori, K. Fujimura, H. Okajima, A. Yamauchi, Tetsu-to-Hagané 54 (1968) 321–329.CrossRef T. Mori, K. Fujimura, H. Okajima, A. Yamauchi, Tetsu-to-Hagané 54 (1968) 321–329.CrossRef
[17]
go back to reference G.L. Howkes, D.R. Morris, Trans. Metall. Soc. AIME 242 (1968) 1083–1089. G.L. Howkes, D.R. Morris, Trans. Metall. Soc. AIME 242 (1968) 1083–1089.
[19]
go back to reference V.I. Yavoiskii, A.G. Svyasin, A.F. Vishkarev, K.B. Nguyen, A.D. Romanovich, G.M. Chursin, Russ. Metall. 3 (1971) 33–40. V.I. Yavoiskii, A.G. Svyasin, A.F. Vishkarev, K.B. Nguyen, A.D. Romanovich, G.M. Chursin, Russ. Metall. 3 (1971) 33–40.
[20]
[21]
[24]
go back to reference X.M. Yang, M. Zhang, P.C. Li, J.Y. Li, J.L. Zhang, J. Zhang, Metall. Mater. Trans. B 43 (2012) 1358–1387.CrossRef X.M. Yang, M. Zhang, P.C. Li, J.Y. Li, J.L. Zhang, J. Zhang, Metall. Mater. Trans. B 43 (2012) 1358–1387.CrossRef
[25]
go back to reference X.M. Yang, M. Zhang, P.C. Li, J.Y. Li, J. Zhang, Steel Res. Int. 84 (2013) 784–811.CrossRef X.M. Yang, M. Zhang, P.C. Li, J.Y. Li, J. Zhang, Steel Res. Int. 84 (2013) 784–811.CrossRef
[26]
go back to reference X.M. Yang, P.C. Li, J.Y. Li, J.L. Zhang, M. Zhang, J. Zhang, Steel Res. Int. 85 (2014) 426–460.CrossRef X.M. Yang, P.C. Li, J.Y. Li, J.L. Zhang, M. Zhang, J. Zhang, Steel Res. Int. 85 (2014) 426–460.CrossRef
[27]
go back to reference J. Zhang, Computational Thermodynamics of Metallurgical Melts and Solutions, Metallurgical Industry Press, Beijing, 2007. J. Zhang, Computational Thermodynamics of Metallurgical Melts and Solutions, Metallurgical Industry Press, Beijing, 2007.
Metadata
Title
Critical assessment of three kinds of activity coefficients of carbon and related mixing thermodynamic functions of Fe–C binary melts based on atom–molecule coexistence theory
Authors
Xue-min Yang
Jin-yan Li
Fang-jia Yan
Dong-ping Duan
Jian Zhang
Publication date
01-02-2018
Publisher
Springer Singapore
Published in
Journal of Iron and Steel Research International / Issue 2/2018
Print ISSN: 1006-706X
Electronic ISSN: 2210-3988
DOI
https://doi.org/10.1007/s42243-018-0019-1

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