ABSTRACT: The energy absorption of an aluminum foam sandwich structure and a conventional polymer foam sandwich structure is similar for impacts ranging from 5 to 25 J. The polymer foam-based samples exhibit localized damage in the form of skin fracture and core crushing, but with negligible permanent out-of-plane deformation. In contrast, the aluminum foam-based samples show little fracture but exhibit extensive out-of-plane deformation radiating from the impact point. This deformation suggests that the impact damage could be more easily detectable in the aluminum foam sandwich structure. Surface strains are lower in the aluminum foam sandwich samples during post-impact loading in a single cantilever beam test, suggesting improved damage t...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...
This study addresses the bending impact behaviour of sandwich beams made of a low density core bonde...
Impact resistance and energy absorbing capability are of great interest in the design of composite s...
The energy absorption of an aluminum foam sandwich structure and a conventional polymer foam sandwic...
In this study, the low-velocity impact behavior of sandwich structures having aluminum foam core rei...
In this thesis, the low-velocity impact behavior of sandwich structures having aluminum foam core re...
ABSTRACT: The impact response of a range of novel sandwich structures based on fiber-reinforced ther...
International audienceThe sandwich panel structures with aluminum foam core and metal surfaces have ...
Aluminium foams and aluminium sandwich structures with metal foam cores are novel materials and stru...
© 2020 Elsevier Ltd This study aimed to investigate low-velocity impact responses and crashworthines...
Relative performance of metal and polymeric foam cored sandwich plates is studied under low velocity...
Sandwich structural composites were prepared by aluminum foam as core materials with basalt fiber(BF...
Composite sandwich structures find wide application in the aerospace sector thanks to their lightwei...
Aluminium (Al) foam sandwich panels are of strong capability to resist impact and absorb energy sinc...
Sandwich panels are widely used in the fabrication of high strength low-weight structure that can wi...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...
This study addresses the bending impact behaviour of sandwich beams made of a low density core bonde...
Impact resistance and energy absorbing capability are of great interest in the design of composite s...
The energy absorption of an aluminum foam sandwich structure and a conventional polymer foam sandwic...
In this study, the low-velocity impact behavior of sandwich structures having aluminum foam core rei...
In this thesis, the low-velocity impact behavior of sandwich structures having aluminum foam core re...
ABSTRACT: The impact response of a range of novel sandwich structures based on fiber-reinforced ther...
International audienceThe sandwich panel structures with aluminum foam core and metal surfaces have ...
Aluminium foams and aluminium sandwich structures with metal foam cores are novel materials and stru...
© 2020 Elsevier Ltd This study aimed to investigate low-velocity impact responses and crashworthines...
Relative performance of metal and polymeric foam cored sandwich plates is studied under low velocity...
Sandwich structural composites were prepared by aluminum foam as core materials with basalt fiber(BF...
Composite sandwich structures find wide application in the aerospace sector thanks to their lightwei...
Aluminium (Al) foam sandwich panels are of strong capability to resist impact and absorb energy sinc...
Sandwich panels are widely used in the fabrication of high strength low-weight structure that can wi...
In this study, the low-velocity impact response of sandwich composites consisting of different foam ...
This study addresses the bending impact behaviour of sandwich beams made of a low density core bonde...
Impact resistance and energy absorbing capability are of great interest in the design of composite s...