Simulation to Static Recrystallization of Nb Micro Alloyed Steel by Cellular Automaton

Article Preview

Abstract:

The model of cellular automaton (CA) for simulating the static recrystallization of Nb micro alloyed steel after hot deformation was established. The static precipitation of micro alloyed elements on the impact of static recrystallization was considered in the mode. The microstructure evolution of austenite static recrystallization of Nb micro alloyed steel was simulated dynamically, such as the the volume fraction, kinetics curve of static recrystallization, dislocation density and grain shape, were quantitatively, accurately and visually described. According to the simulation results by cellular automaton, the effects of the deformation temperature, strain rate, and other processing parameters on the microstructure of the austenite static recrystallization of Nb micro alloyed steel were analyzed. The simulation results could provide a theoretical reference for the control of the microstructure and property of Nb micro alloyed steel.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 418-420)

Pages:

1622-1628

Citation:

Online since:

December 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] S. Ghosh, P. Gabane, A. Bose, N. Chakraborti: Comp. Mater Sci. Vol. 45 (2009), p.96

Google Scholar

[2] B. J. Yang, A. Hattiangadi, W. Z. Li, G. F. Zhou, T. E. McGreevy: Mater. Sci. Eng. Vol. 527(2010), p.2978

Google Scholar

[3] C. W. Zheng, N. M. Xiao, L. H. Hao, D. Z. Li, Y. Y. Li: Acta Mater. Vol. 57(2009), p.2956

Google Scholar

[4] X. H. Zhan, Y. H. Wei, Z. B. Dong: J. Mater. Process Technol. Vol. 208(2008),p.1

Google Scholar

[5] N. Yazdipour, C. H. J. Davies, P. D. Hodgson: Comp. Mater. Sci. Vol. 44(2008),p.566

Google Scholar

[6] D. Z. Li, N. M. Xiao, Y. J. Lan, C. W. Zheng, Y. Y. Li: Acta Mater. Vol. 55(2007), p.6234

Google Scholar

[7] A. Yoshie, H. Morikawa, Yasumitsu, et al: Transactions ISIJ. Vol. 27(1987), p.425

Google Scholar

[8] R. L. Goetz, V. Seetharaman: Scripta Mater. Vol. 38(1998), p.405

Google Scholar

[9] A. Yoshie, T. Fujita, M. Fujioka: ISIJ Int. Vol. 36(1996), p.474

Google Scholar

[10] M. Qian, Z. X. Guo. Mater. Sci. Eng. A. Vol. 365(2004), p.180

Google Scholar

[11] L. J. Zhu, D. Wu, X. M. Zhao: J. Northeastern Univ. Vol. 27(2006), p.987 ( in Chinese)

Google Scholar

[12] H. Hallberg, M. Wallin, M. Ristinmaa: Comp Mater Sci. Vol. 49(2010), p.25

Google Scholar

[13] L. N. Pussegoda, J. J. Jonas: ISIJ Int. Vol. 31(1991), p.278

Google Scholar

[14] L. J. Zhu: Predicting Microstructure and Property of Hot Rolled Low Carbon Si-Mn TRIP Steel Plate. Shenyang: Northeastern University, 2007 ( in Chinese)

Google Scholar

[15] X. G. Zhou, Z. Y. Liu, D. Wu, et al: J. Northeastern Univ. Vol. 28(2007), P. 1374 ( in Chinese)

Google Scholar