Improvement of Technology for Producing Rolled Sheet from Continuously Cast Steel Slabs. Part 2. Physical Modeling of Low-Carbon Steel Strip Rolling*

Author:

Aldunin A. V.,Stulov V. V.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference17 articles.

1. S. S. Gorelik, S. V. Dobatkin, and L. M. Kaputkina, Metal and Alloy Recrystallization, 3rd ed. [in Russian], MiSIS, Moscow (2005).

2. B. A. Dubrovskii, B. A. Nikiforov, and L. V. Radionova, “Study of the effect of production parameters for hot rolling on the structure low-carbon and low-alloy grades of steel,” Proizvod. Prokata, No. 10, 13–16 (2006).

3. M. Olasolo, P. Uranga, J. M. Rodriguez-Ibabe, and B. Lopez, “Effect of austenite deformation microstructure and cooling rate on transformation characteristics in a low carbon Nb–V microalloyed steel,” Materials Science and Engineering A, No. 528, 2559–2569 (2011).

4. A. V. Yankovskii, G. V. Levchenko, S. A. Vorobei, A. I. Karnaukh, and A. P. Klimenko, “Effect of rolling temperature-deformation parameters for thin-sheet low-carbon steel on austenite decomposition kinetics,” Fundament. Prikl. Problemy Chernoe Metallurgii, No. 8, 269–274 (2004).

5. Y. Li, D. N. Growther, P. S. Mitchell, and T. N. Baker, “The evolution of microstructure during thin slab direct rolling processing in vanadium microalloyed steels,” ISIJ Int., 42, 636–644 (2002).

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