This paper discusses the impact behaviour of a self-healing ionomeric polymer and compares its protection capability against space debris impacts to that of simple aluminium-alloy bumpers. To this end, 14 impact experiments on both ionomer and Al-7075-T6 thin plates with similar surface density were made with 1.5 mm aluminium spheres at velocity between 1 and 4 km/s. First, the perforation extent in both materials was evaluated vis-à-vis the prediction of well known hole-size equations; then, attention was given to the damage potential of the cloud of fragments ejected from the rear side of the target by analysing the craters pattern and the momentum transferred to witness plates mounted on a ballistic pendulum behind the bumpers. Self-heal...
The mechanism of hypervelocity impact crater formation in metallic and composite space debris shield...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
In this study, self-healing and anti-sloshing materials are investigated for mitigation of impact-in...
This paper discusses the impact behaviour of a self-healing ionomeric polymer and compares its prote...
This paper discusses the impact behaviour of a self-healing ionomeric polymer and compares its prote...
In this work the impact behavior of a self-healing ionomeric polymer is investigated, both when used...
The ability of some materials to self-repair is a characteristic particularly important for applicat...
In this study, multifunctional panels with structural and self-healing capabilities were experimenta...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
The ability of a material to self-repair is particularly important in remote or hostile environment ...
The ability of a material to self-repair is particularly important in remote or hostile environment ...
AbstractThe important components of a spacecraft require protective shielding from space debris impa...
In this study, the high velocity impact behavior of a dual-plate multifunctional panel composed by a...
In this study, the high velocity impact behavior of a dual-plate multifunctional panel composed by a...
The mechanism of hypervelocity impact crater formation in metallic and composite space debris shield...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
In this study, self-healing and anti-sloshing materials are investigated for mitigation of impact-in...
This paper discusses the impact behaviour of a self-healing ionomeric polymer and compares its prote...
This paper discusses the impact behaviour of a self-healing ionomeric polymer and compares its prote...
In this work the impact behavior of a self-healing ionomeric polymer is investigated, both when used...
The ability of some materials to self-repair is a characteristic particularly important for applicat...
In this study, multifunctional panels with structural and self-healing capabilities were experimenta...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
The ability of a material to self-repair is particularly important in remote or hostile environment ...
The ability of a material to self-repair is particularly important in remote or hostile environment ...
AbstractThe important components of a spacecraft require protective shielding from space debris impa...
In this study, the high velocity impact behavior of a dual-plate multifunctional panel composed by a...
In this study, the high velocity impact behavior of a dual-plate multifunctional panel composed by a...
The mechanism of hypervelocity impact crater formation in metallic and composite space debris shield...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
In this study, self-healing and anti-sloshing materials are investigated for mitigation of impact-in...