In the work presented in this paper, several strain rate potentials are examined in order to analyze their ability to model the initial stress and strain anisotropy of several orthotropic sheet materials. Classical quadratic and more advanced non-quadratic strain rate potentials are investigated in the case of FCC and BCC polycrystals. Different identifications procedures are proposed, which are taking into account the crystallographic texture and/or a set of mechanical test data in the determination of the material parameters
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
AbstractThis paper reviews a class of anisotropic plastic strain-rate potentials, based on linear tr...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In this paper, anisotropic strain rate potentials based on linear transformations of the plastic str...
This paper reviews a class of anisotropic plastic strain-rate potentials, based on linear transforma...
This paper reviews a class of anisotropic plastic strain-rate potentials, based on linear transforma...
AbstractThis paper reviews a class of anisotropic plastic strain-rate potentials, based on linear tr...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
In this paper, anisotropic strain rate potentials based on linear transformations of the plastic str...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
AbstractThis paper reviews a class of anisotropic plastic strain-rate potentials, based on linear tr...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In the work presented in this paper, several strain rate potentials are examined in order to analyze...
In this paper, anisotropic strain rate potentials based on linear transformations of the plastic str...
This paper reviews a class of anisotropic plastic strain-rate potentials, based on linear transforma...
This paper reviews a class of anisotropic plastic strain-rate potentials, based on linear transforma...
AbstractThis paper reviews a class of anisotropic plastic strain-rate potentials, based on linear tr...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
For numerical simulation of sheet metal forming, more and more advanced phenomenological functions a...
In this paper, anisotropic strain rate potentials based on linear transformations of the plastic str...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
International audienceIn this paper, anisotropic strain rate potentials based on linear transformati...
AbstractThis paper reviews a class of anisotropic plastic strain-rate potentials, based on linear tr...