AbstractThe mechanical response and fracture of metal sandwich panels subjected to multiple impulsive pressure loads (shocks) were investigated for panels with honeycomb and folded plate core constructions. The structural performance of panels with specific core configurations under multiple impulsive pressure loads is quantified by the maximum transverse deflection of the face sheets and the core crushing strain at mid-span of the panels. A limited set of simulations was carried out to find the optimum core density of a square honeycomb core sandwich panels under two shocks. The panels with a relative core density of 4%–5% are shown to have minimum face sheet deflection for the loading conditions considered here. This was consistent with t...
Sandwich panel structures with thin front faces and low relative density cores offer significant imp...
The dynamic response of clamped circular monolithic and sandwich plates of equal areal mass and thic...
International audienceA lattice structure deformation mechanism based theoretical model is developed...
AbstractThe mechanical response and fracture of metal sandwich panels subjected to multiple impulsiv...
The deflection and fracture of metal sandwich plates subjected to intense uniform impulsive pressure...
The deflection and fracture of metal sandwich plates subjected to intense uniform impulsive pressure...
Structural response and failure modes of honeycomb sandwich panels subjected to a shock (impulsive p...
This paper presents a computational study for the structural response of blast loaded metallic sandw...
Metallic sandwich panels with a cellular core such as honeycomb or metal foam have the capability of...
Metallic sandwich panels with a core made from cellular solids such as honeycomb have the capability...
A theoretical solution is obtained to predict the dynamic response of peripherally clamped square me...
Metallic sandwich panels with a cellular core such as honeycomb have the capability of dissipating c...
This paper first presents an experimental investigation into square metallic sandwich panels with ei...
Sandwich panel structures with thin front faces and low relative density cores offer significant imp...
The dynamic response of metallic lattice sandwich plates under impulsive loading is studied by exper...
Sandwich panel structures with thin front faces and low relative density cores offer significant imp...
The dynamic response of clamped circular monolithic and sandwich plates of equal areal mass and thic...
International audienceA lattice structure deformation mechanism based theoretical model is developed...
AbstractThe mechanical response and fracture of metal sandwich panels subjected to multiple impulsiv...
The deflection and fracture of metal sandwich plates subjected to intense uniform impulsive pressure...
The deflection and fracture of metal sandwich plates subjected to intense uniform impulsive pressure...
Structural response and failure modes of honeycomb sandwich panels subjected to a shock (impulsive p...
This paper presents a computational study for the structural response of blast loaded metallic sandw...
Metallic sandwich panels with a cellular core such as honeycomb or metal foam have the capability of...
Metallic sandwich panels with a core made from cellular solids such as honeycomb have the capability...
A theoretical solution is obtained to predict the dynamic response of peripherally clamped square me...
Metallic sandwich panels with a cellular core such as honeycomb have the capability of dissipating c...
This paper first presents an experimental investigation into square metallic sandwich panels with ei...
Sandwich panel structures with thin front faces and low relative density cores offer significant imp...
The dynamic response of metallic lattice sandwich plates under impulsive loading is studied by exper...
Sandwich panel structures with thin front faces and low relative density cores offer significant imp...
The dynamic response of clamped circular monolithic and sandwich plates of equal areal mass and thic...
International audienceA lattice structure deformation mechanism based theoretical model is developed...