Cellular Automata Simulation of Textural Evolution during Primary Static Recrystallization of IF Steel

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Abstract:

A two dimensional probabilistic cellular automata model is used to simulate primary static recrystallization of interstitial free (IF) steel. The present study is to investigate the effect of curvature-driven pressure that is induced by protrusions/retrusions of recrystallization fronts on the microstructural and textural evolution during recrystallization. It was found that local interface migration of protrusions/retrusions of recrystallization fronts could significantly affect the kinetics, grain morphology and annealing texture according to the present investigation.

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Periodical:

Materials Science Forum (Volumes 702-703)

Pages:

615-618

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Online since:

December 2011

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[1] F.J. Humphreys, M. Hatherly, Recrystallization and Related Annealing Phenomena, second ed., Elsevier, Oxford, 2004.

Google Scholar

[2] I. Thomas, S. Zaefferer, F. Friedel, D. Raabe, Adv. Eng. Mater., 5 (2003), pp.566-570.

Google Scholar

[3] S.H. Choi, J.H. Cho, Mater. Sci. Eng. A, 405 (2005), pp.86-101.

Google Scholar

[4] S.H. Choi, Material Science Forum Vol. 408-412 (2002), pp.469-474.

Google Scholar

[5] D. Raabe, L. Hantcherli, Comp. Mater. Sci., 34 (2005), pp.299-313.

Google Scholar

[6] Y. Zhang, A. Godfrey, D.J. Jensen, Scripta Mater., 64 (2011), pp.331-334.

Google Scholar

[7] D. Raabe, Philos. Mag. A, 79 (1999), pp.2339-2358.

Google Scholar

[8] K.G.F. Janssens, D. Raabe, E. Kozeschnik, M. Miodownik, B. Nestler, Computational Materials Engineering, Elsevier, San Diego, 2007.

Google Scholar

[9] D.K. Kim, H.W. Lee, K.H. Jung, Y.T. Im, Asian symposium of precision forging (2010), pp.66-71.

Google Scholar

[10] B. Hutchinson, L. Ryde, Microstructural and crystallographic aspects of recrystallization (1995), pp.105-110.

Google Scholar