Role of Bainitic Structure Martensitic-Austenitic Component in Pipe Steel Property Formation. 2. Austenite Deformation and Thermal Stability

Author:

Kolbasnikov N. G.,Kuzin S. A.,Teteryatnikov V. S.,Adigamov R. R.,Sakharov M. S.,Matveev M. A.

Publisher

Springer Science and Business Media LLC

Subject

Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference21 articles.

1. N. Fonstein, “Advanced high strength sheet steels,” in: Physical Metallurgy, Design, Processing, and Properties. Chapter 5: TRIP Steels, Springer International Publishing (2015).

2. S. Yu. Kondrat’ev, O. G. Zotov, G. Ya. Yaroslavskii, et al., “Investigation of interrelationship between damping capacity and mechanical properties as well as morphology of martensite in alloys with reversible martensite transformation,” Probl. Proch., 14B(3), 79 – 82 (1983).

3. G. P. Anastasiadi, S. Yu. Kondrat’ev, V. A. Malyshevskii, and M. V. Sil’nikov, “Importance of thermokinetic diagrams of transformation of supercooled austenite for development of heat treatment modes for critical steel parts,” Metal Sci. Heat Treat., 58(11), 656 – 661 (2017).

4. N. G. Kolbasnikov, M. S. Sakharov, S. A. Kuzin, and V. S. Teteryatnikov, “Stability of untransformed austenite in M/A-phase of low-carbon steel bainitic structure,” Metalloved. Term. Obrab. Met., No. 2, 3 – 8 (2021).

5. J. M. Reichert, T. Garcin, M. Militzer, andW. J. Poole, “Formation of martensite/austenite (m/a) in X80 linepipe steel,” in: Proceedings of the 2012 9th International Pipeline Conference IPC2012. September 24 – 28, 2012, Calgary, Alberta, Canada, IPC2012-90465.

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