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Finite Element Investigation of Hole‐Expansion Formability of Dual‐Phase Steels Using RVE Approach SCIE SCOPUS

Title
Finite Element Investigation of Hole‐Expansion Formability of Dual‐Phase Steels Using RVE Approach
Authors
Lee, M.GKim, J.HMatlock, D.KWagoner, R.H.
Date Issued
2010-06
Publisher
American Institute of Physics
Abstract
Qualitative analysis on the formability of dual-phase (DP) steels was carried out by employing the realistic microstructure based finite element (FE) method. The microstructure-based model was generated using image processing of scanning electron micrographs and mesh generation with a boundary smoothing algorithm. The model was applied to hole-expanding formability tests for two DP steels with distinct volume fractions and morphological features: Steel A with continuous ferritic phase and Steel B with continuous martensitic phase. The micromechanical simulations showed that the high volume fraction of martensite and its morphological characteristics of Steel B prohibited the plastic deformation and damage evolution in ferritic phase, thus delayed the material's failure, while considerable damage propagation occurred along the phase boundaries in Steel A. The observed difference in hole-expansion ratio for the two microstructures was consistent with results from the FE model.
URI
https://oasis.postech.ac.kr/handle/2014.oak/34317
DOI
10.1063/1.3457542
ISSN
0094-243X
Article Type
Article
Citation
AIP Conference Proceedings, vol. 1252, page. 149 - 152, 2010-06
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