The flow stress behavior of a bake-hardenable steel during a few simple shear cycles is investigated using a crystal plasticity model. The simple shear test provides a stable way to reverse the loading direction. Stress reversals were accompanied with a lower yield stress, i.e., the Bauschinger effect, followed by a transient hardening stage with a plateau region and, permanent softening. The origins of these three distinct stages are discussed using a crystal plasticity model. To this end, the representative discrete grain set is tuned to capture such behavior by coupling slip system hardening appropriately. The simulated results are compared with experimental forward-reverse simple shear stress-strain curves. It is shown that the characte...
Work hardening in metals is commonly described by isotropic hardening, especially for monotonically ...
In the present study, a viscoplastic self-consistent crystal plasticity model (VPSC-RGBV), whichacco...
Sheet metal forming processes generally involve complex loadings and nonlinear material models. Comb...
MasterSheet metal forming commonly involves various processing steps leading to complex strain paths...
International audienceThe plastic flow behaviors under monotonic and forward-reverse loading were me...
International audienceThe mechanical behavior of mild and dual phase steel sheets is investigated at...
A hardening model that considers the dislocation reversal-related mechanisms is applied to predict t...
One of the consequences of memory effects in the plastic deformation of metals is the Bauschinger ef...
A hardening model that considers the dislocation reversal‐related mechanisms is applied to predict t...
MasterAutomotive sheet metal products usually undergo complex strain path changes during forming pro...
Abstract. The Bauschinger effect has been investigated in a low stacking fault energy f.c.c. alloy. ...
The Bauschinger effect has been investigated in a low stacking fault energy f.c.c. alloy. Reverse ha...
An austenitic stainless steel has been subjected to large amplitude strain paths containing a strain...
An essential aspect of materials modelling in the field of metal plasticity is hardening. The classi...
The effect of volume fraction and hardness of martensite on the Bauschinger effect in Dual Phase (DP...
Work hardening in metals is commonly described by isotropic hardening, especially for monotonically ...
In the present study, a viscoplastic self-consistent crystal plasticity model (VPSC-RGBV), whichacco...
Sheet metal forming processes generally involve complex loadings and nonlinear material models. Comb...
MasterSheet metal forming commonly involves various processing steps leading to complex strain paths...
International audienceThe plastic flow behaviors under monotonic and forward-reverse loading were me...
International audienceThe mechanical behavior of mild and dual phase steel sheets is investigated at...
A hardening model that considers the dislocation reversal-related mechanisms is applied to predict t...
One of the consequences of memory effects in the plastic deformation of metals is the Bauschinger ef...
A hardening model that considers the dislocation reversal‐related mechanisms is applied to predict t...
MasterAutomotive sheet metal products usually undergo complex strain path changes during forming pro...
Abstract. The Bauschinger effect has been investigated in a low stacking fault energy f.c.c. alloy. ...
The Bauschinger effect has been investigated in a low stacking fault energy f.c.c. alloy. Reverse ha...
An austenitic stainless steel has been subjected to large amplitude strain paths containing a strain...
An essential aspect of materials modelling in the field of metal plasticity is hardening. The classi...
The effect of volume fraction and hardness of martensite on the Bauschinger effect in Dual Phase (DP...
Work hardening in metals is commonly described by isotropic hardening, especially for monotonically ...
In the present study, a viscoplastic self-consistent crystal plasticity model (VPSC-RGBV), whichacco...
Sheet metal forming processes generally involve complex loadings and nonlinear material models. Comb...