Characterisation of the quasi-static flow and fracture behaviour of dual-phase steel sheets in a wide range of plane stress states

authored by
B. A. Behrens, A. Bouguecha, M. Vucetic, I. Peshekhodov
Abstract

An approach to characterise the flow and fracture behaviour with the help of a modified Miyauchi shear test, a uniaxial tensile test on standard, holed, waisted specimens as well as a hydraulic bulge test is presented. The modification of the Miyauchi specimen is related to the geometry of the shear zones. The new geometry helps suppress plastic strain concentration at the edges and increase deformation in the material interior, which allows for accurate fracture characterisation. With the help of the experimental and numerical tests analyses, the flow behaviour and equivalent plastic strain at fracture were estimated for two common cold-rolled dual-phase steels in a wide range of plane stress states. With the obtained data, the applicability of the phenomenological Johnson-Cook fracture model to describe the fracture behaviour of this material type is questioned and a need for a more extensive fracture behaviour characterisation and advanced modelling is shown.

Organisation(s)
Institute of Metal Forming and Metal Forming Machines
Type
Article
Journal
Archives of Civil and Mechanical Engineering
Volume
12
Pages
397-406
No. of pages
10
ISSN
1644-9665
Publication date
04.07.2012
Publication status
Published
Peer reviewed
Yes
ASJC Scopus subject areas
Civil and Structural Engineering, Mechanical Engineering
Electronic version(s)
https://doi.org/10.1016/j.acme.2012.06.017 (Access: Unknown)
 

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