Justification of the Production Technology Efficiency for High-Strength, Low-Alloy Steels with Improved Properties and Quality at Low Cost. Part 3. Production of Rolled Products from Transitional Slabs

Author:

Zaitsev A. I.,Dagman A. I.,Koldaev A. V.,Stepanov A. B.,Kovalev D. A.

Publisher

Springer Science and Business Media LLC

Subject

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

Reference22 articles.

1. E. Kh. Shakhpazov, A. I. Zaitsev, I. G. Rodionova, and G. V. Semernin, “Key directions of metallurgical technology development to meet the increasing requirements for steel quality,” Elektrometallurgiya, No. 2, 2–12 (2011).

2. C. I. Garcia, M. Hua, K. Cho, and A. J. DeArdo, “On the strength of microalloyed steels. An interpretive review,” Metall. Ital., No. 11/12, 35–42 (2009).

3. A. J. DeArdo, “Microalloyed steels: past, present and future,” in: HSLA Steels 2015, Microalloying 2015 & Offshore Engineering Steels, Conf. Proc. (2015), pp. 17–32 .

4. F. Liu, J. Wang, Y. Liu, R. D. K. Misra, and C. Liu, “Effects of Nb and V on microstructural evolution precipitation behavior and tensile properties in hot-rolled Mo-bearing steel,” J. Iron Steel Res. Int., 23, No. 6, 559–565 (2016).

5. H. Mohrbacher, “Reverse metallurgical engineering towards sustainable manufacturing of vehicles using Nb and Mo alloyed high performance steels,” Adv. Manuf., 1, 28–41 (2013).

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