A Study of Large Plastic Deformations in Dual Phase Steel Using Digital Image Correlation and FE Analysis |
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Authors: | V. Tarigopula O. S. Hopperstad M. Langseth A. H. Clausen F. Hild O.-G. Lademo M. Eriksson |
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Affiliation: | (1) Structural Impact Laboratory (SIMLab), Centre for Research-based Innovation (CRI), Department of Structural Engineering, Norwegian University of Science and Technology, 7491 Trondheim, Norway;(2) Laboratoire de Mécanique et Technologie (LMT-Cachan), Ecole Normale Supérieure de Cachan / CNRS-UMR 8535 / Université Paris 6, 61 Avenue du Président Wilson, 94235 Cachan Cedex, France;(3) SINTEF Materials and Chemistry, 7465 Trondheim, Norway |
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Abstract: | ![]() Large plastic deformation in sheets made of dual phase steel DP800 is studied experimentally and numerically. Shear testing is applied to obtain large plastic strains in sheet metals without strain localisation. In the experiments, full-field displacement measurements are carried out by means of digital image correlation, and based on these measurements the strain field of the deformed specimen is calculated. In the numerical analyses, an elastoplastic constitutive model with isotropic hardening and the Cockcroft–Latham fracture criterion is adopted to predict the observed behaviour. The strain hardening parameters are obtained from a standard uniaxial tensile test for small and moderate strains, while the shear test is used to determine the strain hardening for large strains and to calibrate the fracture criterion. Finite Element (FE) calculations with shell and brick elements are performed using the non-linear FE code LS–DYNA. The local strains in the shear zone and the nominal shear stress-elongation characteristics obtained by experiments and FE simulations are compared, and, in general, good agreement is obtained. It is demonstrated how the strain hardening at large strains and the Cockcroft–Latham fracture criterion can be calibrated from the in-plane shear test with the aid of non-linear FE analyses. An erratum to this article can be found at |
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Keywords: | Shear test DP800 Sheet metal Digital image correlation Numerical simulations Ductile fracture Cockcroft– Latham fracture criterion |
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