Sandwich panels with aluminium foam core and fibre–metal laminate (FML) skins for enhanced impact resistance have been designed and manufactured during this research activity. The FML skins are made of a combination of aluminium sheets and E-glass fibre/epoxy-laminated plies. Drop-weight impact tests are conducted on two groups of sandwich panels with aluminium foam core bonded to the aluminium sheet in Group 1 panels, and aluminium foam core bonded to the E-glass/epoxy ply in Group 2 panels to allow an investigation of the bonding capability between the aluminium foam and the FML skins under impact and the impact resistance of the sandwich panels. The delamination and debonding ranges, the maximum deformed height in the impact area are mea...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...
Low velocity impact responses of a newly developed sandwich panel with aluminium foam core and fibre...
Aluminium (Al) foam sandwich panels are of strong capability to resist impact and absorb energy sinc...
Sandwich panels with aluminium (Al) foam as the core have been increasingly attracting research inte...
In this paper, high velocity impact responses of newly designed sandwich panels with aluminium (AL) ...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Aluminium- glass fiber reinforced plastics (GFRP) sandwich panels are hybrid laminates consisting of...
Aluminium - glass fiber reinforced plastics (GFRP) sandwich panels are hybrid laminates consisting o...
Sandwich panels are widely used in the fabrication of high strength low-weight structure that can wi...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Sandwich structures consist of one light core layer and two top layers, which form the load-bearing ...
The main advantage of using sandwich structures is their high strength, high energy absorbing capaci...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...
Low velocity impact responses of a newly developed sandwich panel with aluminium foam core and fibre...
Aluminium (Al) foam sandwich panels are of strong capability to resist impact and absorb energy sinc...
Sandwich panels with aluminium (Al) foam as the core have been increasingly attracting research inte...
In this paper, high velocity impact responses of newly designed sandwich panels with aluminium (AL) ...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Aluminium- glass fiber reinforced plastics (GFRP) sandwich panels are hybrid laminates consisting of...
Aluminium - glass fiber reinforced plastics (GFRP) sandwich panels are hybrid laminates consisting o...
Sandwich panels are widely used in the fabrication of high strength low-weight structure that can wi...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Sandwich structures consist of one light core layer and two top layers, which form the load-bearing ...
The main advantage of using sandwich structures is their high strength, high energy absorbing capaci...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
The impact damage resistance of Fibre Metal Laminates (FML) is studied. FML is a new family of lamin...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...