Microstructural Evolution of Two Medium Carbon Microalloyed Steels during Hot Forging Process

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Abstract:

The main aim of the present investigation was to study the flow behaviour of two medium carbon microalloyed steels under hot forming conditions, and to analyse its microstructural evolution. The dependence of recrystallized grain size (Drec) on the Zener-Hollomon parameter Z shows a bimodal behaviour with transition from single to cyclic dynamic recrystallization. Also we observed that the variation of Drec normalized by Burgers vector (b) with sss normalized by shear modulus ( µ) shows the same bimodal behaviour cited above. The Derby’s universal equation cited in literature for recrystallized grain sizes was not followed; it seems that the presence of fine precipitated particles has a clear effect on this disagreement.

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Materials Science Forum (Volumes 500-501)

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155-162

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Online since:

November 2005

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[1] M. Mabuchi, K. Ameyama, H. Iwasaki y K. Higashi: Acta Metall. Vol. 47 (1999), p. (2047).

Google Scholar

[2] T. Mohri, M. Mabuchi, M. Nakamura, T. Asahina, H. Iwasaki, T. Aizawa y K. Higashi: Mater. Sci. Eng. Vol. A290 (2000), p.139.

Google Scholar

[3] W. J. Kim, S. W. Chung, C. S. Chung y D. Kum: Acta Metall. Vol. 49 (2001), p.3337.

Google Scholar

[4] A. Wantzen, P. Karduck y G. Gottstein: en Strength of Metals and Alloys, Proc. Conf. , ICSMA5, ed. P. Haasen y col. , Pregamon Press, Nueva York Vol. 1 (1979), p.517.

DOI: 10.1016/b978-1-4832-8412-5.50089-8

Google Scholar

[5] L. Blaz, T. Sakai y J.J. Jonas: Metal Science Vol. 17 (1983), p.603.

Google Scholar

[6] P.J. Gras: Metall. Trans. A Vol. 6 (1975), p.1197.

Google Scholar

[7] H. J. Mc Queen y J.J. Jonas: Treatise on Materials Science and Technology 6, Academic press, (1975), p.394.

Google Scholar

[8] R. J. Twiss: Pageoph Vol. 115 (1997), p.227.

Google Scholar

[9] J. P. Poirier: en Creep of crystals, Cambridge Univ. Press. (1985).

Google Scholar

[10] B. Derby: Scripta Metallurgica et Materialia Vol. 27 (1992), p.1581.

Google Scholar

[11] B. Derby: Acta Metallurgica Vol. 39, nº 5 (1991), p.955.

Google Scholar

[12] S. Sakui, T. Sakai y K. Takeishi: Trans ISIJ Vol. 17 (1977), p.718.

Google Scholar

[13] T. Sakai y J.J. Jonas: Acta Metallurgica Vol 32, nº2 (1984), p.189.

Google Scholar

[14] P.E. Reynolds: Ironmaking and Steelmaking Vol. 8 (1991), p.52.

Google Scholar

[15] F.G. Wilson y T. Gladman: International Materials Review Vol. 33, nº5 (1988), p.221.

Google Scholar

[16] O.N. Dogan, G.M. Michal y H.W. Kwon: Metall. Trans. A Vol. 23 (1992), p.2121.

Google Scholar

[17] A. Al Omar, Doctoral Thesis, Universidad Politécnica de Cataluña, (1996).

Google Scholar

[18] J. M. Cabrera, Doctoral Thesis, Universidad Politécnica de Cataluña, (1995).

Google Scholar

[19] J.J. Jonas y H.J. McQueen, en Mise en forme de métaux et alliages, cap. 6, Editions du C.N. RS., Paris. (1976), p.99.

DOI: 10.51257/a-v1-m670

Google Scholar