Auxetic foams have previously been shown to have benefits including higher indentation resistance than their conventional counterparts, due to their negative Poisson’s ratio, making them better at resisting penetration by concentrated loads. The Poisson’s ratio and Young’s modulus of auxetic open cell foams have rarely been measured at the high compressive strain rates typical during impacts of energy absorbing material in sporting protective equipment. Auxetic closed cell foams are less common than their open cell counterparts, and only their quasi-static characteristics have been previously reported. It is, therefore, unclear how the Poisson’s ratio of auxetic foam, and associated benefits such as increased indentation resistance shown at...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
International audienceAuxetic foams have previously been shown to have benefits including higher ind...
International audienceAuxetic foams have previously been shown to have benefits including higher ind...
Foams are commonly used for cushioning in protective sporting equipment. Volumetrically compressing ...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
Auxetic foams have previously been shown to have benefits including higher indentation resistance th...
International audienceAuxetic foams have previously been shown to have benefits including higher ind...
International audienceAuxetic foams have previously been shown to have benefits including higher ind...
Foams are commonly used for cushioning in protective sporting equipment. Volumetrically compressing ...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...
This study compared low strain rate material properties and impact force attenuation of auxetic foam...