A theoretical energy-based model to capture the ballistic response of sandwich structures made of composite material peels and a crushable foam core was developed. The model was based on the wave propagation theory and it was split in six stages with their corresponding energy-absorption mechanisms. The division of the stages was based on the physical interpretation of the perforation process involving reasonable hypotheses and simplifications. The energy-absorption was analysed at velocities below, near and above the ballistic limit within all the stages showing the general trends in terms of their relative importance. The time and velocity at each stage was separately analysed within a wide range of velocities in order to see the stage co...
This dissertation presents experimental, numerical and analytical investigations of sandwich plates ...
The paper reports the results of an experimental and numerical investigation into the effect of the...
Proceeding of: 19th DYMAT Technical Meeting: Dynamic Mechanical Behaviour of Polymers and Composites...
7 pages, 9 figuresIn this study the perforation of composite sandwich structures subjected to high-v...
An analytical method based on the energy balance and wave propagation approach was developed for a s...
This work evaluates the behavior of sandwich and spaced plates subjected to high-velocity impacts. T...
Proceeding of: 15th International Conference on Composite Structures (ICCS/15), University of Porto,...
This work examines the behaviour of glass/polyester panels under high-velocity impact. A theoretical...
This paper studies the high velocity impact response of sandwich plates, with E glass fibre/polyeste...
Given the widespread usage of composite components in critical structures within the aerospace and a...
In this paper a review of impact mechanics and high-energy absorbing materials is presented. We revi...
This work analyses the influence that the areal density of a composite thin-plate, made of glass-fib...
15th International Conference on Composite Structures (ICCS/15), University of Porto, Porto, Portuga...
This dissertation presents experimental, numerical and analytical investigations of sandwich plates ...
The paper reports the results of an experimental and numerical investigation into the effect of the...
Proceeding of: 19th DYMAT Technical Meeting: Dynamic Mechanical Behaviour of Polymers and Composites...
7 pages, 9 figuresIn this study the perforation of composite sandwich structures subjected to high-v...
An analytical method based on the energy balance and wave propagation approach was developed for a s...
This work evaluates the behavior of sandwich and spaced plates subjected to high-velocity impacts. T...
Proceeding of: 15th International Conference on Composite Structures (ICCS/15), University of Porto,...
This work examines the behaviour of glass/polyester panels under high-velocity impact. A theoretical...
This paper studies the high velocity impact response of sandwich plates, with E glass fibre/polyeste...
Given the widespread usage of composite components in critical structures within the aerospace and a...
In this paper a review of impact mechanics and high-energy absorbing materials is presented. We revi...
This work analyses the influence that the areal density of a composite thin-plate, made of glass-fib...
15th International Conference on Composite Structures (ICCS/15), University of Porto, Porto, Portuga...
This dissertation presents experimental, numerical and analytical investigations of sandwich plates ...
The paper reports the results of an experimental and numerical investigation into the effect of the...
Proceeding of: 19th DYMAT Technical Meeting: Dynamic Mechanical Behaviour of Polymers and Composites...