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Continuous strain path change simulations for sheet metal SCIE SCOPUS

Title
Continuous strain path change simulations for sheet metal
Authors
Ha, JKim, JHBarlat, FLee, MG
Date Issued
2014-02
Publisher
Elsevier
Abstract
The plastic behavior of a material undergoing continuous strain path changes, from plane strain to simple shear, was simulated for a mild steel. A distortional hardening model was employed to capture the Bauschinger effect and latent hardening. The simulations were conducted by direct application of the constitutive equations with simple boundary conditions and by using a finite element code in which the distortional hardening model was previously implemented. Depending on the rate of path change, the simulations resulted in different combinations of plastic responses including the Bauschinger effect, transient hardening, flow stress overshooting and strain hardening stagnation. The simulated stress-strain curves were found to be in good agreement with experimental results published by van Riel and van den Boogaard (2007). (C) 2013 Elsevier B.V. All rights reserved.
Keywords
Constitutive model; Strain path change; Cross-hardening; Bauschinger effect; Finite element method; POLYCRYSTALLINE METALS; HARDENING MODEL; STEEL; BEHAVIOR
URI
https://oasis.postech.ac.kr/handle/2014.oak/14704
DOI
10.1016/J.COMMATSCI.2013.09.042
ISSN
0927-0256
Article Type
Article
Citation
Computational Materials Science, vol. 82, page. 286 - 292, 2014-02
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BARLAT FREDERIC GERARDBARLAT, FREDERIC GERARD
Ferrous & Energy Materials Technology
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