This present study investigates experimentally and numerically the crush response and energy absorption performances of auxetic foam-filled square tubes under quasi-static axial loading. Three different structures: empty, conventional and auxetic foam-filled square tubes have been compared and examined with respect to the deformation modes and load–displacement curves. Standard compression tests were conducted on the tubes to evaluate the influence of auxetic foam in the energy absorption of empty tubes. Moreover, results from computer simulation have also been supplemented to further examine the abovementioned effect. It is discovered that the auxetic foam-filled square tube is superior to empty and conventional foam-filled square tubes in...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Following paper is focused on experimental and numerical studies of the behavior and energy absorpti...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Auxetic materials are modern class of materials that have recently been gaining popularity within th...
This paper treats energy absorption and crushing characteristics of auxetic foam-filled square-secti...
Filling thin-walled tubes with foam cores is a typical method to promote a desirable energy absorpti...
This paper treats the influence of auxetic foam on the crush response and energy absorption response...
AbstractAuxetic materials are modern class of materials that have recently been gaining popularity w...
Filling the thin-walled tubes with a foam core is a typical method to enhance the energy absorption ...
This present research numerically investigates the energy absorption capability of auxetic foam-fill...
Auxetic materials have recently been gaining popularity within the research community due to their e...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
The use and the combination of new, high efficient materials for crashworthiness is of great interes...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Following paper is focused on experimental and numerical studies of the behavior and energy absorpti...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Auxetic materials are modern class of materials that have recently been gaining popularity within th...
This paper treats energy absorption and crushing characteristics of auxetic foam-filled square-secti...
Filling thin-walled tubes with foam cores is a typical method to promote a desirable energy absorpti...
This paper treats the influence of auxetic foam on the crush response and energy absorption response...
AbstractAuxetic materials are modern class of materials that have recently been gaining popularity w...
Filling the thin-walled tubes with a foam core is a typical method to enhance the energy absorption ...
This present research numerically investigates the energy absorption capability of auxetic foam-fill...
Auxetic materials have recently been gaining popularity within the research community due to their e...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
This paper treats the crush behaviour and energy absorption response of foam-filled conical tubes su...
The use and the combination of new, high efficient materials for crashworthiness is of great interes...
Comprehensive numerical simulations using non-linear finite element code were conducted to investiga...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...
Following paper is focused on experimental and numerical studies of the behavior and energy absorpti...
Foam-filled thin-walled tubes have been considered to be desirable energy absorbers under axial load...