This paper models the flexural behaviour of a composite sandwich structure with an aluminium foam core using the finite element (FE) code LS-DYNA. Two core thicknesses, 5 and 20 mm, were investigated. The FE results were compared with results from previous experimental work that measured full-field strain directly from the sample during testing. The deformation and failure behaviour predicted by the FE model compared well with the behaviour observed experimentally. The strain predicted by the FE model also agreed reasonably well with the distribution and magnitude of strain obtained experimentally. However, the FE model predicted lower peak load, which is most likely due to a size effect exhibited by aluminium foam. A simple modification of...
In this paper a discussion about the determination of the stress state corresponding to the applicat...
Now in current world design applications in automotive, aerospace and military, cellular solids such...
Now in current world design applications in automotive, aerospace and military, cellular solids such...
One potential application of aluminium foam sandwich panels in civil engineering is the cladding sys...
The effect of core thickness on the deformation mechanism of an aluminium foam core/thermoplastic co...
In-service, composite sandwich structures, which consist of fibre-composite skins (also termed face-...
Aluminium foam has a range of properties that are desirable in many applications. These properties i...
Aluminium sandwich structures are gaining prominence in designing automotive, aerospace and military...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
Demand using aluminum foam sandwich in various application of industry keep increasing. Hence, the r...
Demand using aluminum foam sandwich in various application of industry keep increasing. Hence, the r...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
In this paper a discussion about the determination of the stress state corresponding to the applicat...
Now in current world design applications in automotive, aerospace and military, cellular solids such...
Now in current world design applications in automotive, aerospace and military, cellular solids such...
One potential application of aluminium foam sandwich panels in civil engineering is the cladding sys...
The effect of core thickness on the deformation mechanism of an aluminium foam core/thermoplastic co...
In-service, composite sandwich structures, which consist of fibre-composite skins (also termed face-...
Aluminium foam has a range of properties that are desirable in many applications. These properties i...
Aluminium sandwich structures are gaining prominence in designing automotive, aerospace and military...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
Demand using aluminum foam sandwich in various application of industry keep increasing. Hence, the r...
Demand using aluminum foam sandwich in various application of industry keep increasing. Hence, the r...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
7 pages, 11 figuresThe dynamic flexural behaviour of sandwich beams, with composite face-sheets and ...
In this paper a discussion about the determination of the stress state corresponding to the applicat...
Now in current world design applications in automotive, aerospace and military, cellular solids such...
Now in current world design applications in automotive, aerospace and military, cellular solids such...