In this study, we investigate deformation behavior of f.c.c. single crystals containing microvoids by using three-dimensional finite element methods. The unit cell analysis has been conducted to study the effect of stress triaxialities, crystallographic orientations and initial void volume fractions on the growth and coalescence of voids in f.c.c. single crystals. The locally homogeneous constitutive model for the rate-dependent single crystal plasticity is implemented into a finite element program (ABAQUS) by means of the user-defined subroutine (UMAT). To identify the effect of stress triaxiality and the crystallographic orientation on the void evolution, the stress triaxiality was kept constant during deformation. The numerical results s...
International audienceIn this work, a single crystal strain gradient plasticity model is derived at ...
International audienceVoids can be observed at various scales in ductile materials, frequently of si...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
AbstractVoid growth and coalescence in single crystals are investigated using crystal plasticity bas...
Void growth and morphology evolution are studied using a 3D representative volume element with a sph...
International audienceIn this work, we study the effect of crystallographic orientation and applied ...
The failure mechanism in ductile materials involves void nucleation, their growth and subsequent coa...
Failure of ductile metals has widely been observed to occur by nucleation, growth and coalescence of...
AbstractVoid growth and coalescence in single crystals are investigated using crystal plasticity bas...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
International audienceIn this work, a single crystal strain gradient plasticity model is derived at ...
International audienceIn this work, a single crystal strain gradient plasticity model is derived at ...
International audienceVoids can be observed at various scales in ductile materials, frequently of si...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
Void growth and coalescence in single crystals are investigated using crystal plasticity based 3D fi...
AbstractVoid growth and coalescence in single crystals are investigated using crystal plasticity bas...
Void growth and morphology evolution are studied using a 3D representative volume element with a sph...
International audienceIn this work, we study the effect of crystallographic orientation and applied ...
The failure mechanism in ductile materials involves void nucleation, their growth and subsequent coa...
Failure of ductile metals has widely been observed to occur by nucleation, growth and coalescence of...
AbstractVoid growth and coalescence in single crystals are investigated using crystal plasticity bas...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...
International audienceIn this work, a single crystal strain gradient plasticity model is derived at ...
International audienceIn this work, a single crystal strain gradient plasticity model is derived at ...
International audienceVoids can be observed at various scales in ductile materials, frequently of si...
International audienceVoid growth and coalescence, known as main mechanisms of ductile fracture, are...