In the framework of linear elasticity 3D for complex microstructures that cannot be simply described in terms of components such as biological tissues, we propose, in this research work, a methodology for multiscale experimental identification of the apparent elasticity random field of the microstructure at mesoscopic scale using displacement field measurements at macroscopic scale and mesoscopic scale. We can then use this methodology in the case of changing scale to obtain the mechanical properties at macroscale. In this context, the major issue is the experimental identification by solving a statistical inverse problem of the stochastic modeling introduced for the apparent elasticity random field at mesoscale. This experimental identific...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...
The presentation is devoted to a multiscale statistical inverse problem related to materials for whi...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...
In the framework of linear elasticity 3D for complex microstructures that cannot be simply described...
Dans le cadre de l'élasticité linéaire 3D des microstructures complexes qui ne peuvent pas être simp...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThe aim of this work is to efficiently and robustly solve the statistical inve...
International audienceWe consider a mesoscale modeling of a complex microstructure for which the med...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...
The presentation is devoted to a multiscale statistical inverse problem related to materials for whi...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...
In the framework of linear elasticity 3D for complex microstructures that cannot be simply described...
Dans le cadre de l'élasticité linéaire 3D des microstructures complexes qui ne peuvent pas être simp...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThis paper deals with a multiscale statistical inverse method for performing t...
International audienceThe aim of this work is to efficiently and robustly solve the statistical inve...
International audienceWe consider a mesoscale modeling of a complex microstructure for which the med...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...
The presentation is devoted to a multiscale statistical inverse problem related to materials for whi...
Biomechanical materials, as cortical bones, are complex materials to be modeled with respect to the ...