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Cited 159 time in webofscience Cited 174 time in scopus
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Characterization of the post-necking strain hardening behavior using the virtual fields method SCIE SCOPUS

Title
Characterization of the post-necking strain hardening behavior using the virtual fields method
Authors
Kim, JHSerpantie, ABarlat, FPierron, FLee, MG
Date Issued
2013-11
Publisher
Elsevier
Abstract
The present study aims at characterizing the post-necking strain hardening behavior of three sheet metals having different hardening behavior. Standard tensile tests were performed on sheet metal specimens up to fracture and heterogeneous logarithmic strain fields were obtained from a digital image correlation technique. Then, an appropriate elasto-plastic constitutive model was chosen. Von Mises yield criterion under plane stress and isotropic hardening law were considered to retrieve the relationship between stress and strain. The virtual fields method (VFM) was adopted as an inverse method to determine the constitutive parameters by calculating the stress fields from the heterogeneous strain fields. The results show that the choice of a hardening law which can describe the hardening behavior accurately is important to derive the true stress-strain curve. Finally, post-necking hardening behavior was successfully characterized up to the initial stage of localized necking using the VFM with Swift and modified Voce laws. (C) 2013 Elsevier Ltd. All rights reserved.
Keywords
Full-field measurement; Virtual fields method; Elasto-plastic behaviour; Isotropic hardening; Inverse problem; Advanced high strength steel; ELASTOPLASTIC CONSTITUTIVE PARAMETERS; RECTANGULAR CROSS-SECTION; SHEET-METAL; FRACTURE INITIATION; NUMERICAL-ANALYSIS; TENSILE TEST; IDENTIFICATION; CURVE; RECONSTRUCTION; SPECIMENS
URI
https://oasis.postech.ac.kr/handle/2014.oak/27398
DOI
10.1016/J.IJSOLSTR.2013.07.018
ISSN
0020-7683
Article Type
Article
Citation
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, vol. 50, no. 24, page. 3829 - 3842, 2013-11
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BARLAT FREDERIC GERARDBARLAT, FREDERIC GERARD
Ferrous & Energy Materials Technology
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