The Solute Drag Effect during Recrystallisation and Grain Growth in Austenite

Article Preview

Abstract:

The relevance of the solute drag phenomenon to the hot rolling of modern steel grades is outlined. An overview of our present knowledge of solute drag in grain growth and recrystallisation in austenite is presented and recommendations for subsequent research are given.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 715-716)

Pages:

673-678

Citation:

Online since:

April 2012

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] S.F. Medina and A. Quispe: ISIJ International Vol. 41 (2001), p.774.

Google Scholar

[2] M.C. Somani, L.P. Karjalainen, D.A. Porter and R.A. Morgridge, in: Intern. Conference on Thermomechanical Processing: Mechanisms, Microstructure and Control, edited by E.J. Palmiere, M. Mahfouf and C. Pinna, The University of Sheffield, UK (2003).

Google Scholar

[3] M.C. Somani and L.P. Karjalainen: Materials Science Forum Vols. 467-470 (2004), p.335.

Google Scholar

[4] L. Lissel and G. Engberg: Materials Science Forum Vols. 558-559 (2007), p.1127.

Google Scholar

[5] L. Lissel, G. Engberg and U. Borggren, in: TMP, 3rd International Conference on Thermomechanical Processing of Steel, Padua, Italy (2008).

Google Scholar

[6] G. Engberg and L. Lissel: Steel Research International, Vol. 79 (2008), p.47.

Google Scholar

[7] A. Perlade, D. Grandemange, D. Huin, A. Couturier and K. Oostsuka: La Revue de Métallurgie (September 2008), p.443.

DOI: 10.1051/metal:2008063

Google Scholar

[8] H.S. Zurob, Y. Bréchet and G. Purdy: Acta Mater. Vol. 49 (2001), p.4183.

Google Scholar

[9] H.S. Zurob, C.R. Hutchinson, Y. Bréchet and G. Purdy: Acta Mater. Vol. 50 (2002), p.3075.

Google Scholar

[10] J.W. Cahn: Acta Metallurgica Vol. 10 (1962), p.789.

Google Scholar

[11] M. Hillert and B. Sundman: Acta Metallurgica Vol. 24 (1976), p.731.

Google Scholar

[12] G. Gottstein, L.S. Shvindlerman: Grain Boundary Migration in Metals, CRC Press, (1999).

Google Scholar

[13] O.O. Miller: Transactions of the American Society for Metals, Vol. 43 (1951), p.260.

Google Scholar

[14] M. Militzer, A. Giumelli, E. B. Hawbolt and T.R. Meadowcroft: Metallurgical and Materials Transactions, Vol. 27A (1996), p.3399.

DOI: 10.1007/bf02595433

Google Scholar

[15] S. Jiao, J. Penning, F. Leysen, Y. Houbaert and E. Aernoudt: Steel Research Vol. 71 (2000), p.340.

DOI: 10.1002/srin.200001326

Google Scholar

[16] S. Uhm, J. Moon, C. Lee, J. Yoon and B. Lee: ISIJ International, Vol. 44 (2004), p.1230.

Google Scholar

[17] H. Hu: Canadian Metallurgical Quarterly, Vol. 13 (1974), p.275.

Google Scholar

[18] L.P. Karjalainen, M.C. Somani and D.A. Porter: Materials Science Forum, Vol. 426-432 (2003), p.1181.

Google Scholar

[19] H.L. Andrade, M.G. Akben and J.J. Jonas: Metallurgical Transactions, Vol. 14A (1983), p. (1967).

Google Scholar

[20] M.G. Akben and J.J. Jonas, in: proceedings of the Conference HSLA Steel, Technology & Applications, ASM, Metals Park, OH (1983), p.149.

Google Scholar

[21] S. Yamamoto, C. Ouchi and T. Osuka, in: Thermomechanical Processing of Microalloyed Austenite, edited by A.J. deArdo, G.A. Ratz and P.J. Wray, AIME, Warrendale, Pa (1982).

Google Scholar

[22] H.J. Grabke: ISIJ International, Vol. 29 (1989), p.529.

Google Scholar

[23] T. Abe, K. Tsukada, H. Tagawa, and I. Kozasu: ISIJ International, Vol. 30 (1990), p.444.

Google Scholar

[24] N. Maruyama, G.D.W. Smith and A. Cerezo: Mat. Sci. Eng., Vol. A353 (2003), p.126.

Google Scholar

[25] N. Maruyama and G.D.W. Smith: Nippon Steel Technical Report No. 91, January (2005).

Google Scholar

[26] H.S. Zurob, Y. Bréchet and J. Dunlop: Acta Materialia, Vol. 54 (2006), p.3983.

Google Scholar