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Application of homogeneous potentials for the modeling of the Bauschinger effects in ultra low carbon steel

Title
Application of homogeneous potentials for the modeling of the Bauschinger effects in ultra low carbon steel
Authors
Jin-Jin Ha,a Jin-Woo Lee,a Toshihiko Kuwabara,b Myoung-Gyu Lee,a and Frédéric BarlatBarlat Frederic Gerard
Date Issued
2011-05
Publisher
American Institute of Physics
Abstract
In this work, an approach is proposed for the description of the plastic behavior of materials subjected to multiple or continuous strain path changes. In particular, although it is not formulated with a kinematic hardening rule, it provides a reasonable description of the Bauschinger effect when loading is reversed. This description of anisotropic hardening is based on homogeneous yield functions/plastic potentials combining a stable, isotropic hardening-type, component and a fluctuating component. The capability of this constitutive description is illustrated with applications on an ultra low carbon steel sheet sample deformed in three-stage uniaxial loading with two load reversals [1].
Keywords
Bauschinger effect; Constitutive model; Reverse loading; Strain hardening; Yield function; STRAIN
URI
https://oasis.postech.ac.kr/handle/2014.oak/13495
DOI
10.1063/1.3589721
ISSN
0094-243X
Article Type
Conference
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