Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel

The results of investigations of physical nature of the 09G2S steel (0.1% C, 1% Mn, 2% Si) H-beam thermomechanical strengthening are presented. The quantitative regularities of formation of the structure, phase composition, defect substructure, and mechanical properties in different H-beam cross sec...

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Main Author: V. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. Konovalov
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2011-06-01
Series:Успехи физики металлов
Online Access:https://doi.org/10.15407/ufm.12.02.241
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author V. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. Konovalov
author_facet V. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. Konovalov
author_sort V. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. Konovalov
collection DOAJ
description The results of investigations of physical nature of the 09G2S steel (0.1% C, 1% Mn, 2% Si) H-beam thermomechanical strengthening are presented. The quantitative regularities of formation of the structure, phase composition, defect substructure, and mechanical properties in different H-beam cross sections under accelerated cooling in different regimes are revealed. The gradient structure—phase states formation is characterized by the regular change of dislocation substructure types and parameters, average cementiteparticles sizes and nanosize-range α-phase fragments on cross section are revealed by methods of transmission electron-diffraction microscopy. As revealed, the substructure and deformation mechanisms depending on the martensite and bainite formation are the main causes responsible for the hardened layer strength increase. These mechanisms contribution is a regulated value, and it depends on the steel treatment regime essentially.
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spelling doaj.art-6d7f27da32694a9c98f8503a1363b2a92022-12-22T00:28:05ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов1608-10212617-07952011-06-0112224126810.15407/ufm.12.02.241Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon SteelV. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. KonovalovThe results of investigations of physical nature of the 09G2S steel (0.1% C, 1% Mn, 2% Si) H-beam thermomechanical strengthening are presented. The quantitative regularities of formation of the structure, phase composition, defect substructure, and mechanical properties in different H-beam cross sections under accelerated cooling in different regimes are revealed. The gradient structure—phase states formation is characterized by the regular change of dislocation substructure types and parameters, average cementiteparticles sizes and nanosize-range α-phase fragments on cross section are revealed by methods of transmission electron-diffraction microscopy. As revealed, the substructure and deformation mechanisms depending on the martensite and bainite formation are the main causes responsible for the hardened layer strength increase. These mechanisms contribution is a regulated value, and it depends on the steel treatment regime essentially.https://doi.org/10.15407/ufm.12.02.241
spellingShingle V. E. Gromov, Yu. F. Ivanov, O. Yu. Efimov, A. B. Yur’ev, S. V. Konovalov
Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
Успехи физики металлов
title Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
title_full Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
title_fullStr Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
title_full_unstemmed Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
title_short Regularities and Mechanisms of Thermomechanical Hardening of Rolled Low-Carbon Steel
title_sort regularities and mechanisms of thermomechanical hardening of rolled low carbon steel
url https://doi.org/10.15407/ufm.12.02.241
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