In order to predict necking and fracture phenomena, a crystal plasticity model is introduced in the finite element analysis of tensile tests. Grains having different orientations are subjected to numerical tensile tests. A damage model is also proposed to predict the sudden drop of load carrying capacity after necking and to reflect the void nucleation and growth on the severely deformed region. From the analyses of tensile test, the necking and fracture phenomena are well predicted
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
To define accurately the expansion limits of aerospace materials, determination of the material beha...
Without initial imperfection and damage evolution model, it is difficult to analyze the necking beha...
In some advanced sheet metal forming processes such as the incremental forming process, a loca...
When performing a basic tensile test on a plate specimen, one can obtain the true plastic stress-str...
Failure in sheet metal can be caused by one of, or a combination of, the following mechanisms: ducti...
Failure in sheet metal can be caused by one of, or a combination of, the following mechanisms: ducti...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
A crystal plasticity model is developed to predict the fatigue crack nucleation of polycrystalline m...
A multi-scale prediction method was proposed to investigate the scatter of fracture toughness by com...
International audienceThe most commonly observed ductile fracture mechanism is void nucleation, grow...
A crystal plasticity model accounting for damage evolution and ductile failure in a single crystal d...
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
To define accurately the expansion limits of aerospace materials, determination of the material beha...
Without initial imperfection and damage evolution model, it is difficult to analyze the necking beha...
In some advanced sheet metal forming processes such as the incremental forming process, a loca...
When performing a basic tensile test on a plate specimen, one can obtain the true plastic stress-str...
Failure in sheet metal can be caused by one of, or a combination of, the following mechanisms: ducti...
Failure in sheet metal can be caused by one of, or a combination of, the following mechanisms: ducti...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
International audienceThis article deals with numerical simulation of necking. It draws the attentio...
A crystal plasticity model is developed to predict the fatigue crack nucleation of polycrystalline m...
A multi-scale prediction method was proposed to investigate the scatter of fracture toughness by com...
International audienceThe most commonly observed ductile fracture mechanism is void nucleation, grow...
A crystal plasticity model accounting for damage evolution and ductile failure in a single crystal d...
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
A finite element solution procedure is presented to predict the load-displacement history up to ulti...
To define accurately the expansion limits of aerospace materials, determination of the material beha...