The effect of core thickness on the deformation mechanism of an aluminium foam core/thermoplastic composite facing sandwich structure under 4-point bending was investigated. Full field strain analysis and visual observations show a number of failure mechanisms between the different core thicknesses. High strain concentrations were observed in each sample thickness corresponding to the particular region of failure. The thinner samples exhibited skin wrinkling and fracture, and some core cracking and crushing while the thicker samples failed due to core indentation. Increasing the skin thickness eliminated the incidence of core indentation. Instead, significant core shear cracking was observed
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Sandwich structures offer innovative alternative solutions to many weight-critical industrial fields...
This paper models the flexural behaviour of a composite sandwich structure with an aluminium foam co...
Aluminium foam has a range of properties that are desirable in many applications. These properties i...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
Metals foams are attracting great interest in aerospace, automotive and military fields. Particularl...
This paper addresses the flexural properties of sandwich structures with cellular core materials. Ex...
AbstractThe aim of this article is to investigate the effect of a kind of polymer foam and skin on b...
Recent studies on innovative solutions in structural engineering fields highlight the effectiveness ...
Recent studies on innovative solutions in structural engineering fields highlight the effectiveness ...
Aluminium sandwich structures are gaining prominence in designing automotive, aerospace and military...
The response of aluminium foam-cored sandwich panels to localised contact loading was investigated e...
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Sandwich structures offer innovative alternative solutions to many weight-critical industrial fields...
This paper models the flexural behaviour of a composite sandwich structure with an aluminium foam co...
Aluminium foam has a range of properties that are desirable in many applications. These properties i...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
The bending behavior of hybrid sandwich panels, with aluminum foam core, and carbon fiber reinforced...
Metals foams are attracting great interest in aerospace, automotive and military fields. Particularl...
This paper addresses the flexural properties of sandwich structures with cellular core materials. Ex...
AbstractThe aim of this article is to investigate the effect of a kind of polymer foam and skin on b...
Recent studies on innovative solutions in structural engineering fields highlight the effectiveness ...
Recent studies on innovative solutions in structural engineering fields highlight the effectiveness ...
Aluminium sandwich structures are gaining prominence in designing automotive, aerospace and military...
The response of aluminium foam-cored sandwich panels to localised contact loading was investigated e...
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Debonding between the skins and the core in a sandwich structure is a critical failure mode in autom...
Sandwich structures offer innovative alternative solutions to many weight-critical industrial fields...