AbstractThe mechanical behavior of a metallic sandwich sheet material composed of two flat face sheets and two bi-directionally corrugated core layers is analyzed in detail. The manufacturing of the sandwich material is simulated to obtain a detailed unit cell model which accounts for the non-uniform thickness distribution and residual stresses associated with the stamping of the core layers. Virtual experiments are performed by subjecting the unit cell model to various combinations of bi-axial in-plane loading including the special cases of uniaxial tension, uniaxial compression, equi-biaxial tension and shear. The results demonstrate that the core structure’s contribution to the in-plane load carrying capacity of the sandwich sheet materi...
AbstractAn experimental and computational study of the bending response of steel sandwich panels wit...
Metallic sandwich panels with a cellular core such as honeycomb or metal foam have the capability of...
Cellular metals with stochastic, 2D or 3D periodic microstructures can sustain large plastic deforma...
International audienceThe mechanical behavior of a metallic sandwich sheet material composed of two ...
This thesis investigates the mechanical behavior of a new type of formable all-metal bi-directionall...
In this paper, the bending performances of sandwich panels with corrugated triangular, honeycomb, al...
Studying the mechanical behavior of metal cores provides insight into the overall performance of str...
Punching experiments on wide honeycomb sandwich beams were performed to evaluate the predictive capa...
Sandwich panels represent a basic design unit for light weight structures. Sandwich panels typically...
The response of aluminium foam-cored sandwich panels to localised contact loading was investigated e...
Sandwich materials are structures made of two stiff skins and a softer lightweight core in between t...
This study analyzes the mechanical behavior of low density polyethylene foam core sandwich panels su...
Metallic sandwich panels composed of two face sheets and cores with low relative density have lightw...
Lattice materials are used as the core of sandwich panels to construct light and strong structures. ...
grantor: University of TorontoA finite element model for the analysis of sandwich plates w...
AbstractAn experimental and computational study of the bending response of steel sandwich panels wit...
Metallic sandwich panels with a cellular core such as honeycomb or metal foam have the capability of...
Cellular metals with stochastic, 2D or 3D periodic microstructures can sustain large plastic deforma...
International audienceThe mechanical behavior of a metallic sandwich sheet material composed of two ...
This thesis investigates the mechanical behavior of a new type of formable all-metal bi-directionall...
In this paper, the bending performances of sandwich panels with corrugated triangular, honeycomb, al...
Studying the mechanical behavior of metal cores provides insight into the overall performance of str...
Punching experiments on wide honeycomb sandwich beams were performed to evaluate the predictive capa...
Sandwich panels represent a basic design unit for light weight structures. Sandwich panels typically...
The response of aluminium foam-cored sandwich panels to localised contact loading was investigated e...
Sandwich materials are structures made of two stiff skins and a softer lightweight core in between t...
This study analyzes the mechanical behavior of low density polyethylene foam core sandwich panels su...
Metallic sandwich panels composed of two face sheets and cores with low relative density have lightw...
Lattice materials are used as the core of sandwich panels to construct light and strong structures. ...
grantor: University of TorontoA finite element model for the analysis of sandwich plates w...
AbstractAn experimental and computational study of the bending response of steel sandwich panels wit...
Metallic sandwich panels with a cellular core such as honeycomb or metal foam have the capability of...
Cellular metals with stochastic, 2D or 3D periodic microstructures can sustain large plastic deforma...