Simulation of Recrystallization and Recrystallization Textures in Aluminium Alloys

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Abstract:

The control of the plastic anisotropy during forming of a metallic sheet requires detailed knowledge on its microstructure and, especially, crystallographic texture. During the thermo-mechanical processing of aluminium sheet products in commercial production lines the material experiences a complex history of temperature, time and strain paths, which result in alternating cycles of deformation and recrystallization with the associated changes in texture and microstructure. Thus, computer-based alloy and process development requires integration of models for simulating the evolution of microstructure, microchemistry and crystallographic texture into process models of the thermo-mechanical production of Al sheet. The present study focuses on recent developments in linking softening modules that simulate the progress of recovery and recrystallization with the following texture changes to deformation and microchemistry models.

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Materials Science Forum (Volumes 715-716)

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399-406

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April 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] F.J. Humphreys, M. Hatherly: Recrystallization and Related Annealing Phenomena, Pergamon, Oxford (1995).

Google Scholar

[2] O. Engler, V. Randle: Introduction to Texture Analysis: Macrotexture, Microtexture and Orientation Mapping, CRC Press, Boca Raton, FL (2010).

DOI: 10.1201/9781482287479

Google Scholar

[3] J. Hirsch, K. Lücke: Acta Metall. 36 (1988) 2863.

Google Scholar

[4] O. Engler, M. Crumbach, S. Li: Acta Mater. 53 (2005) 2241.

Google Scholar

[5] O. Engler, I. Heckelmann, T. Rickert, J. Hirsch, K. Lücke: Mater. Sci. Technol. 10 (1994) 771.

Google Scholar

[6] A. Oscarsson, H. -E. Ekström, W.B. Hutchinson: Mater. Sci. Forum 113-115 (1993) 177.

Google Scholar

[7] F.J. Humphreys, H.M. Chan: Mater. Sci. Technol. 12 (1996) 143.

Google Scholar

[8] R.K. Davies, V. Randle, G.J. Marshall: Acta Mater. 46 (1998) 6021.

Google Scholar

[9] R.D. Doherty, G. Gottstein, J. Hirsch, W.B. Hutchinson, K. Lücke, E. Nes, P.J. Willbrandt, in: J.S. Kallend, G. Gottstein (Eds. ), Proc. ICOTOM 8, TMS, Warrendale, PA (1988) p.563.

Google Scholar

[10] J. Hjelen, R. Ørsund, E. Nes: Acta Metall. Mater. 39 (1991) 1377.

Google Scholar

[11] O. Engler, C. Escher, G. Gottstein: Textures and Microstructures 26-27 (1996) 337.

Google Scholar

[12] O. Engler: Mater. Sci. Technol. 12 (1996) 859.

Google Scholar

[13] B. Liebmann, K. Lücke, G. Masing: Z. Metallkd. 47 (1956) 57.

Google Scholar

[14] G. Gottstein, L.S. Shvindlerman: Scripta Metall. Mater. 27 (1992) 1515.

Google Scholar

[15] D.A. Molodov, U. Czubayko, G. Gottstein, L.S. Shvindlerman: Scripta Metall. Mater. 32 (1995) 529.

Google Scholar

[16] J. Hirsch, in: N. Hansen et al. (Eds. ), Proc. 7th Risø Int. Symp., Risø Nat. Lab., Roskilde, Denmark (1986) p.349.

Google Scholar

[17] K. Lücke, O. Engler: Mater. Sci. Technol. 6 (1990) 1113.

Google Scholar

[18] H. Hu, in: N. Hansen et al. (Eds. ), Proc. 7th Risø Int. Symp., Risø Nat. Lab., Roskilde, Denmark (1986) p.75.

Google Scholar

[19] I.L. Dillamore, H. Katoh: Metal Sci. 8 (1974) 73.

Google Scholar

[20] A.L. Dons, E. Nes: Mater. Sci. Technol. 2 (1986) 8.

Google Scholar

[21] H. Weiland, J.R. Hirsch: Textures and Microstructures 14-18 (1991) 647.

Google Scholar

[22] O. Daaland, E. Nes: Acta Mater. 44 (1996) 1389.

Google Scholar

[23] R.D. Doherty, R.W. Cahn: J. Less Common Metals 28 (1972) 279.

Google Scholar

[24] O. Engler: Metall. Mater. Trans. 30A (1999) 1517.

Google Scholar

[25] P. Wagner, O. Engler, K. Lücke: Acta Metall. Mater. 43 (1995) 3799.

Google Scholar

[26] O. Engler: Scripta Mater. 44 (2001) 229.

Google Scholar

[27] F.J. Humphreys: Acta Metall. 25 (1977) 1323.

Google Scholar

[28] H.E. Vatne, T. Furu, R. Ørsund, E. Nes: Acta Mater. 44 (1996) 4463.

DOI: 10.1016/1359-6454(96)00078-x

Google Scholar

[29] H.E. Vatne, K. Marthinsen, R. Ørsund, E. Nes: Metall. Trans. 27A (1996) 4133.

Google Scholar

[30] JA. Sæter, B. Forbord, H.E. Vatne, E. Nes, in: T. Sato et al. (Eds. ), Proc. ICAA 6, the Japan Inst. of Light Metals, Tokyo (1998) Vol. 1, p.113.

Google Scholar

[31] O. Engler: Textures and Microstr. 28 (1997) 197.

Google Scholar

[32] O. Engler, H.E. Vatne: JOM 50, No. 6 (1998) 23.

Google Scholar

[33] O. Engler: Textures and Microstr. 32 (1999) 197.

Google Scholar

[34] O. Engler, L. Löchte, J. Hirsch: Acta Mater. 55 (2007) 5449.

Google Scholar

[35] O. Engler, X.W. Kong, K. Lücke: Philos. Mag. A81 (2001) 543.

Google Scholar