The features of martensitic transformation in 12% chromium ferritic–martensitic steels

An anomaly in martensitic transformation (the effect of martensitic two-peak splitting in the temperature-dependent thermal expansion coefficient) in complex alloyed 12% chromium steels Fe-12%Cr-Ni-Mo-W-Nb-V-B (ChS-139), Fe-12%Cr-Mo-W-Si-Nb-V (EP-823) and Fe-12%Cr-2%W-V-Ta-B (EK-181) was investigated in this study. This effect is manifested in steels with a higher degree of alloying (ChS-139). During varying temperature regimes in dilatometric analysis, it was found that the splitting of the martensitic peak was associated with the superposition of two martensitic transformations of austenite depleted and enriched with alloying elements. The anomaly was subsequently eliminated by homogenization of the steel composition due to high-temperature aging in the γ-region. It was shown that if steel is heated to 900◦C, which lies in the (α + γ) phase region or slightly higher during cooling, then the decomposition of austenite proceeds in two stages: during the first stage, austenite is diffused into ferrite with carbides; during the second stage, shear transformation of austenite to martensite occurs. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.

Authors
Bazaleeva K. 1, 2 , Golubnichiy A.3 , Chernov A. 3 , Ni A. 1 , Mendagaliyev R.4
Journal
Publisher
MDPI AG
Number of issue
16
Language
English
Status
Published
Number
4503
Volume
14
Year
2021
Organizations
  • 1 Institute of Innovative Engineering Technologies, RUDN University, Moscow, 117198, Russian Federation
  • 2 Institute of Manufacturing Technologies and Engineering, Moscow State University of Technology «STANKIN», Moscow, 109240, Russian Federation
  • 3 Scientific Research, Design and Technological Department of Development of Fuel Rods for Fast and Gas Reactors, JSC A. A. Bochvar High-Technology Research Institute of Inorganic Materials, Moscow, 123098, Russian Federation
  • 4 World-class research center «Advanced Digital Technologies», St. Petersburg State Marine Technical R, St. Petersburg, 190121, Russian Federation
Keywords
Ferritic–martensitic steels; Martensitic transformation; Mi-crostructure; Thermal dilatometric analysis
Date of creation
16.12.2021
Date of change
16.12.2021
Short link
https://repository.rudn.ru/en/records/article/record/76703/
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