Formation of austenite in initially quenched low-carbon steels of different alloying systems in the intercritical temperature interval

Phase and structural transformations upon heating in the intercritical temperature range have been studied in initially quenched 12Kh2G2NMFT and 12KhN3A low-carbon steels. The dependence of the intercritical interval (ICI) width on the heating rate of initially quenched steels has been demonstrated....

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Veröffentlicht in:Physics of metals and metallography 2011-11, Vol.112 (5), p.480-487
Hauptverfasser: Zayats, L. Ts, Panov, D. O., Simonov, Yu. N., Balakhnin, A. N., Smirnov, A. I., Yakovleva, I. L.
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container_end_page 487
container_issue 5
container_start_page 480
container_title Physics of metals and metallography
container_volume 112
creator Zayats, L. Ts
Panov, D. O.
Simonov, Yu. N.
Balakhnin, A. N.
Smirnov, A. I.
Yakovleva, I. L.
description Phase and structural transformations upon heating in the intercritical temperature range have been studied in initially quenched 12Kh2G2NMFT and 12KhN3A low-carbon steels. The dependence of the intercritical interval (ICI) width on the heating rate of initially quenched steels has been demonstrated. The structure and properties of the steels after high-rate austenitizing and isothermal holding in the ICI have been studied. It has been shown that in both steels the formation of austenite occurs by the martensite mechanism, and the further development of nuclei is mainly determined by the diffusion paths of carbon.
doi_str_mv 10.1134/S0031918X11050310
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source Springer Nature - Complete Springer Journals
subjects Alloy steels
Alloy systems
Alloying
Austenite
Chemistry and Materials Science
Diffusion
Intervals
Low carbon steels
Materials Science
Metallic Materials
Phase Transformations
Quenching (cooling)
Steel, Structural
Structural steels
Structure
Toy industry
title Formation of austenite in initially quenched low-carbon steels of different alloying systems in the intercritical temperature interval
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