Influence of the temperature and strain rate on the structure and fracture mode of high-strength steels upon the simulation of the thermal cycle of welding and post-welding tempering

Author:

Pazilova U. A.,Il’in A. V.,Kruglova A. A.,Motovilina G. D.,Khlusova E. I.

Publisher

Pleiades Publishing Ltd

Subject

Materials Chemistry,Condensed Matter Physics

Reference10 articles.

1. L. S. Livshits and A. N. Khakimov, Metal Science of Welding and Heat Treatment of Welded Joints (Mashinostroenie, Moscow, 1989) [in Russian].

2. V. V. Ardentov, V. A. Malyshevskii, N. N. Pravdina, V. V. Rybin, and T. G. Semicheva, “Structure and properties of heat-affected zone of high-strength structural steel,” Fiz. Khim. Obrab. Mater., No. 5, 119–125 (1985).

3. V. A. Karkhin, Heat Processes upon Welding (Izd-vo Politekh. Univ., St. Petersburg, 2013) [in Russian].

4. V. M. Schastlivtsev, T. I. Tabatchikova, I. L. Yakovleva, S. Yu. Klyueva, A. A. Kruglova, E. I. Khlusova, and V. V. Orlov, “Effect of austenite-decomposition temperature on bainite morphology and properties of lowcarbon steel after thermomechanical treatment,” Phys. Met. Metallogr., 114, 419–429 (2013).

5. I. V. Gorynin, V. V. Rybin, V. A. Malyshevskii, Yu. L. Legostaev, and T. G. Semicheva, “Basic aspects of designing and application of high-strength structural steel,” Vopr. Materialoved., No. 3 (20), 7–21 (1999).

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