Nonlocality is discussed in differential and discrete formulations. When modeling heterogeneous materials, a length scale must be introduced into the material description of the differential formulation. This happens since metrics is lost in performing the limit process. Avoiding the limit process, that is, using a discrete formulation, the length scale is intrinsically taken into account. Moreover, nonlocality seems to characterize global variables rather than material. This made it possible to move the length scale from constitutive to governing equations
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A thermodynamically consistent nonlocal formulation for damaging materials is presented. The second ...
International audienceNonlocal continuum mechanics allows one to account for the small length scale ...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
It is shown herein that the bending, buckling and vibration problems of a microstructured beam can b...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A thermodynamically consistent nonlocal formulation for damaging materials is presented. The second ...
International audienceNonlocal continuum mechanics allows one to account for the small length scale ...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
Nonlocal approaches are discussed with regard to the differential and discrete formulations. Nonloca...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
One of the main research fields in past years concerns the modeling of heterogeneous materials. For ...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
Two topics will be discussed here, which usually are not put in direct relationship: nonlocal approa...
It is shown herein that the bending, buckling and vibration problems of a microstructured beam can b...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A nonlocal thermodynamically consistent model of plasticity and damage is presented using an inte...
A thermodynamically consistent nonlocal formulation for damaging materials is presented. The second ...
International audienceNonlocal continuum mechanics allows one to account for the small length scale ...