Thermodynamic calculation of phase equilibria in stainless steels

  • Grega Klancnik Ph.D, Assistant

Abstract


In this paper two examples of thermodynamic investigation of stainless steels using both, experimental and modeling approach are described. The ferritic-austenitic duplex stainless steel and austenitic stainless steel were investigated using thermal analysis. The complex melting behavior was evident for both alloy systems. Experimentally obtained data were compared with the results of the thermodynamic calculations using the CALPHAD method. The equilibrium thermal events were also described by the calculated heat capacity. In spite of the complexity of both selected real alloy systems a relative good agreement was obtained between the thermodynamic calculations and experimental results.

Key words:CALPHAD, Stainless Steel, Phase diagram, Computational Thermodynamics

Author Biography

Grega Klancnik, Ph.D, Assistant
Department of Materials and Metallurgy

References

D. M. Kundrat, J. F. Elliott, Metallurgical transactions A, 19 A (1988) p. 899-908

M. Hillert, C. Qiu, Metallurgical Transactions A, 21 A, (1990) p. 1673-1680

Y. Pan, C. Qiu, Transactions of NFsoc, 5 (2) (1995) p. 76-84

M. Ceylan, V. Kuzucu, M. Aksoy, I. Aksoy, M. Kaplan, M. M. Yildirim, Journal of materials Processing Technology 69 (1997) p. 238-246

J. Janovec, B. Šuštaršič, J. Medved, M. Jenko, MTAEC9, 37 (6) (2003) p. 307-312

http://www.calphad.org/

H. L. Lukas, S. G. Fries, B. Sundman, Computational Thermodynamics; The Calphad Method, Cambridge university press, New York, 2007, p.79-157

V. Raghavan, D. P. Antia, Metallurgical and Materials transactions A, 25A, (1994) p. 2675-2681

A. T. Dinsdale, CALPHAD 15 (4) (1991) p. 317-425

O. Redlich, A. T. Kister, Ind. Eng. Chem., 40 (1948) p. 345-348

http://www.thermocalc.com/res/pdfDBD/TCNI5_extended_info.pdf

W. J. Boettinger, U. R. Kattner, K.-W. Moon, J. H. Perepezko, DTA and Heat-flux DSC Measurements of Alloy Melting and Freezing, NIST Recommendation Practice Guide, 2006, p.19

M. Pohl, O. Storz, T. Glogowski, Materials characterization, 58 (2007) p. 65-71

E. Erişir, U. Prahl, W. Bleck, 6th International Advanced Technologies Symposium (IATS11), 16-18 May, Eleziğ, Turkey, 2011, p. 471-474

J. L. Beckers, P. Moureaux, M. Carton, A. M. Habraken, Phys. stat. sol. (a), 203 (15) (2006) p. 3651-3664

F. Huang, X. Wang, J. Zhang, C. Ji, Y. Fang, Y. Yu, Journal of iron and steel research, International 15 (6) (2008) p. 78-82

P. Hedström, Doctoral Thesis, Luleå University of Technology, Sweden 2007, p.6

H. Nassar, Doctoral Thesis, KTH, Stockolm, Sweden 2009

P. E. A. Turchi, L. Kaufman, Z. K. Liu, CALPHAD, 30 (1) (2006) p. 70-87

T. B. Massalski, et al., Binary Alloy Phase Diagrams. 2 ed, ASM Int.: Materials Park, OH. 1990

H. Fredriksson, Solidification and casting of metals, The metal Society, London 1979 p.131-138

T. Okane, T. Umeda, ISIJ International, 38 (5) (1998) 5 p. 454-460

V. Shankar, T. P. S. Gill, S. L. Mannan, S. Sundaresan, Frontiers in materials science (B. Ray, B. S. Rao) Bangalore: Universities Press, India 2005 p.359-382

K. Rajasekhar, C. S. Harendranath, R. Raman, S.D. Kulkarni,. Mater, Charact. 38 (1997) p. 53-65

D. S. Petrovič, G. Klančnik, M. Pirnat, J. Medved, J. Thermal. Anal. Calorim. 105 (1) (2011) p. 251-257

D. S. Petrovič, M. Pirnat ,G. Klančnik, P. Mrvar, J. Medved, J.Therm. Anal. Calorim. 109 (3) (2012) p. 1185-1191

Published
2014/02/10
How to Cite
Klancnik, G. (2012). Thermodynamic calculation of phase equilibria in stainless steels. Journal of Mining and Metallurgy, Section B: Metallurgy, 48(3), 383. Retrieved from https://aseestant.ceon.rs/index.php/jmm/article/view/2928
Section
Original Scientific Paper