The combination of fibre metal laminates (FML) and sandwich structures can significantly increase the performance under impact of FMLs. The goal of this work was to create a material that will combine the superior properties of FMLs and foam sandwich structures in terms of the impact resistance and simultaneously have lower density and fewer disadvantages related to the manufacturing. An extensive impact testing campaign has been done using conventional fibre metal laminates (carbon- and glass-based) and in the proposed fibre foam metal laminates to assess and compare their behaviour. The main difference was observed in the energy absorption mechanisms. The dominant failure mechanism for fibre foam laminates is the formation of delamination...
Sandwich panels with aluminium foam core and fibre–metal laminate (FML) skins for enhanced impact re...
The low-velocity impact response of a range of fiber metal laminate (FML) panels was investigated th...
Advanced composite materials and fiber-metal laminates (FMLs) have the potential to offer significan...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Low velocity impact responses of a newly developed sandwich panel with aluminium foam core and fibre...
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...
Sandwich panels with aluminium (Al) foam as the core have been increasingly attracting research inte...
Generating high-energy absorbing FML concepts is challenging because aluminium and composite failure...
Fibre Metal Laminate (FML), a metal sandwiched hybrid composite material is well-known for its enhan...
Fibre Metal Laminate (FML), a metal sandwiched hybrid composite material is well-known for its enhan...
Fibre Metal Laminates(FML) are a new family of materials built up using a combination of thin meta...
The low-velocity impact response of a range of fiber metal laminate (FML) panels was investigated th...
Fibre Metal Laminates(FML) are a new family of materials built up using a combination of thin meta...
Sandwich panels with aluminium foam core and fibre–metal laminate (FML) skins for enhanced impact re...
The low-velocity impact response of a range of fiber metal laminate (FML) panels was investigated th...
Advanced composite materials and fiber-metal laminates (FMLs) have the potential to offer significan...
The combination of fibre metal laminates (FML) and sandwich structures can significantly increase th...
Low velocity impact responses of a newly developed sandwich panel with aluminium foam core and fibre...
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...
Sandwich panels with aluminium (Al) foam as the core have been increasingly attracting research inte...
Generating high-energy absorbing FML concepts is challenging because aluminium and composite failure...
Fibre Metal Laminate (FML), a metal sandwiched hybrid composite material is well-known for its enhan...
Fibre Metal Laminate (FML), a metal sandwiched hybrid composite material is well-known for its enhan...
Fibre Metal Laminates(FML) are a new family of materials built up using a combination of thin meta...
The low-velocity impact response of a range of fiber metal laminate (FML) panels was investigated th...
Fibre Metal Laminates(FML) are a new family of materials built up using a combination of thin meta...
Sandwich panels with aluminium foam core and fibre–metal laminate (FML) skins for enhanced impact re...
The low-velocity impact response of a range of fiber metal laminate (FML) panels was investigated th...
Advanced composite materials and fiber-metal laminates (FMLs) have the potential to offer significan...