This paper treats the dynamic response and energy absorption of aluminum foam-filled conical tubes under axial impact loading using non-linear finite element techniques. The influence of geometrical, material and loading parameters on the impact response is investigated using validated numerical models. Results are quantified in terms of important impact response parameters and indicate that the foam filler stabilizes the crushing process and thus improves the energy absorption capacity. The superior performance of foam-filled conical tubes as impact energy absorbers is evident from the results. The research information generated will be useful in developing guidance towards the design of these devices in impact applications
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
The combination of the superior conical shape along with light weight foam will enhance the energy a...
This paper treats the dynamic response and energy absorption of aluminum foamfilled conical tubes un...
This paper treats the dynamic crush response and energy absorption of aluminum foam-filled conical t...
This paper treats the dynamic crush response and energy absorption of aluminum foam-filled conical t...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Foam-filled thin-walled tubes are considered to be desirable energy absorbers under\ud axial loading...
Foam-filled thin-walled tubes are considered to be desirable energy absorbers under axial loading du...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Foam-filled conical tubes have recently emerged as efficient energy absorbing devices to mitigate th...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
The combination of the superior conical shape along with light weight foam will enhance the energy a...
This paper treats the dynamic response and energy absorption of aluminum foamfilled conical tubes un...
This paper treats the dynamic crush response and energy absorption of aluminum foam-filled conical t...
This paper treats the dynamic crush response and energy absorption of aluminum foam-filled conical t...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Foam-filled thin-walled tubes are considered to be desirable energy absorbers under\ud axial loading...
Foam-filled thin-walled tubes are considered to be desirable energy absorbers under axial loading du...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Foam-filled conical tubes have recently emerged as efficient energy absorbing devices to mitigate th...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
The combination of the superior conical shape along with light weight foam will enhance the energy a...