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Modelling the behaviour of polycrystalline austenitic steel with twinning-induced plasticity effect
Authors:MN Shiekhelsouk  V Favier  K Inal  M Cherkaoui
Institution:1. LPMM, UMR CNRS 7554, ENSAM, 4 rue Augustin Fresnel, Technopôle, 57078 Metz, France;2. ENSMSE CMP-PS2, Quartier St. Pierre, Avenue des Anémones 13120 Gardanne, France;3. GeorgiaTech-CNRS UMI 2958, Georgia Institute of Technology, Atlanta, GA, USA
Abstract:A micromechanical model using the scale transition method in elastoviscoplasticity has been developed to describe the behaviour of those austenitic steels that display a TWIP effect. A physically based constitutive equation at the grain scale is proposed considering two inelastic strain modes: crystallographic slip and twinning. The typical organizations of microtwins observed in electron microscopy are considered, and the twin–slip as well as the twin–twin interactions are accounted for. The parameters for slip are first fitted on the uniaxial tensile response obtained at intermediate temperatures (when twinning is inhibited). Then, the parameters associated with twinning are identified using the stress–strain curve at room temperature. The simulated results in both macro and micro scales are in good agreement with experimentally obtained results.
Keywords:A  Dislocations  A  Twinning  B  Elastic&ndash  viscoplastic material  B  Crystal plasticity  Homogenisation
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