In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel

The present work is aimed at studying the macroscopic localization of plastic strain in low-carbon steel AISI A283 Grade C. The evolution of macroscopically localized plastic strain at various stages of strain hardening is visualized via a Digital image speckle correlation (DISC) method. The process...

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Main Authors: Yu. Li, S. Barannikova
Format: Article
Language:English
Published: Croatian Metallurgical Society 2021-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/357473
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spelling doaj-ef3e8a7381d6474faec705838dfb94182020-11-25T04:01:04ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762021-01-01601-25558In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steelYu. Li0S. Barannikova1Institute of Strength Physics and Materials Science of Siberian Branch Russian Academy of Sciences (ISPMS SB RAS), Tomsk, Russia; National Research Tomsk State University, Tomsk, Russia; Tomsk State Architecture and Building University, Tomsk, RussiaInstitute of Strength Physics and Materials Science of Siberian Branch Russian Academy of Sciences (ISPMS SB RAS), Tomsk, Russia; National Research Tomsk State University, Tomsk, Russia; Tomsk State Architecture and Building University, Tomsk, RussiaThe present work is aimed at studying the macroscopic localization of plastic strain in low-carbon steel AISI A283 Grade C. The evolution of macroscopically localized plastic strain at various stages of strain hardening is visualized via a Digital image speckle correlation (DISC) method. The processing of stress-strain curves of the steel samples enabled one to distinguish the following stages of strain hardening: the yield point, the parabolic hardening, and the pre-failure. The inspection of local strain distributions reveals that the parabolic work hardening is presented by a system of stationary plastic strain centers placed at equal distances. To perform a comprehensive analysis of local elongations from the parabolic work hardening toward the pre-failure stage, the total elongation components were measured at the strain centers. The average total elongation is found to be almost constant at the parabolic work hardening, but abruptly increases when approaching the pre-failure stage. The plastic strain instability is highlighted, as well, by the rising total elongation (amplitude) at the strain sites.https://hrcak.srce.hr/file/357473low-carbon steellocalization of the plastic deformationDISCtensile teststrain
collection DOAJ
language English
format Article
sources DOAJ
author Yu. Li
S. Barannikova
spellingShingle Yu. Li
S. Barannikova
In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
Metalurgija
low-carbon steel
localization of the plastic deformation
DISC
tensile test
strain
author_facet Yu. Li
S. Barannikova
author_sort Yu. Li
title In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
title_short In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
title_full In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
title_fullStr In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
title_full_unstemmed In situ digital image speckle correlation (DISC) observation of plastic strain increment in low-carbon steel
title_sort in situ digital image speckle correlation (disc) observation of plastic strain increment in low-carbon steel
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2021-01-01
description The present work is aimed at studying the macroscopic localization of plastic strain in low-carbon steel AISI A283 Grade C. The evolution of macroscopically localized plastic strain at various stages of strain hardening is visualized via a Digital image speckle correlation (DISC) method. The processing of stress-strain curves of the steel samples enabled one to distinguish the following stages of strain hardening: the yield point, the parabolic hardening, and the pre-failure. The inspection of local strain distributions reveals that the parabolic work hardening is presented by a system of stationary plastic strain centers placed at equal distances. To perform a comprehensive analysis of local elongations from the parabolic work hardening toward the pre-failure stage, the total elongation components were measured at the strain centers. The average total elongation is found to be almost constant at the parabolic work hardening, but abruptly increases when approaching the pre-failure stage. The plastic strain instability is highlighted, as well, by the rising total elongation (amplitude) at the strain sites.
topic low-carbon steel
localization of the plastic deformation
DISC
tensile test
strain
url https://hrcak.srce.hr/file/357473
work_keys_str_mv AT yuli insitudigitalimagespecklecorrelationdiscobservationofplasticstrainincrementinlowcarbonsteel
AT sbarannikova insitudigitalimagespecklecorrelationdiscobservationofplasticstrainincrementinlowcarbonsteel
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