The coupling between structural support and protection makes biological systems an important source of inspiration for the development of advanced smart composite structures. In particular, some particular material configurations can be implemented into traditional composites in order to improve their impact resistance and the out-of-plane properties, which represents one of the major weakness of commercial carbon fibres reinforced polymers (CFRP) structures. Based on this premise, a three-dimensional twisted arrangement shown in a vast multitude of biological systems (such as the armoured cuticles of Scarabei, the scales of Arapaima Gigas and the smashing club of Odontodactylus Scyllarus) has been replicated to develop an improved structur...
The purpose of this study is to mitigate the brittle behaviour of CFRP. CFRP is a composite material...
Abstract The Bouligand structure found in the dactyl club of mantis shrimps is known for its impact ...
Materials that are impact resistant enough for personal protection in sports, transport, and combat ...
Composite laminated materials have been largely implemented in advanced applications due to the high...
In this work, we manufactured bio-inspired thin-ply Carbon Fibre Reinforced Plastic (CFRP) laminates...
In this work, several bio-inspired thin-ply CFRP laminates mimicking the helicoidal architecture of ...
Different bio-inspired Bouligand thin-ply Carbon-Fibre-Reinforced Plastic (CFRP) laminates with a pi...
This thesis adopted two novel bioinspired microstructural approaches for the purpose of investigatin...
In this work, we demonstrate for the first time that the inherent low performance to out-of-plane lo...
This study explored the impact response of two bio-inspired composite laminates with linear and non-...
To investigate if the relative high strength and stiffness of biological composites can be translate...
This thesis presents three novel bio-inspired microstructural concepts, for point-by-point tailorabl...
The Bouligand structure, which is found in many biological materials, is a hierarchical architecture...
Materials that are impact resistant enough for personal protection in sports, transport, and combat ...
In this work, we design, prototype, test and analyse the first high-performance Herringbone-Bouligan...
The purpose of this study is to mitigate the brittle behaviour of CFRP. CFRP is a composite material...
Abstract The Bouligand structure found in the dactyl club of mantis shrimps is known for its impact ...
Materials that are impact resistant enough for personal protection in sports, transport, and combat ...
Composite laminated materials have been largely implemented in advanced applications due to the high...
In this work, we manufactured bio-inspired thin-ply Carbon Fibre Reinforced Plastic (CFRP) laminates...
In this work, several bio-inspired thin-ply CFRP laminates mimicking the helicoidal architecture of ...
Different bio-inspired Bouligand thin-ply Carbon-Fibre-Reinforced Plastic (CFRP) laminates with a pi...
This thesis adopted two novel bioinspired microstructural approaches for the purpose of investigatin...
In this work, we demonstrate for the first time that the inherent low performance to out-of-plane lo...
This study explored the impact response of two bio-inspired composite laminates with linear and non-...
To investigate if the relative high strength and stiffness of biological composites can be translate...
This thesis presents three novel bio-inspired microstructural concepts, for point-by-point tailorabl...
The Bouligand structure, which is found in many biological materials, is a hierarchical architecture...
Materials that are impact resistant enough for personal protection in sports, transport, and combat ...
In this work, we design, prototype, test and analyse the first high-performance Herringbone-Bouligan...
The purpose of this study is to mitigate the brittle behaviour of CFRP. CFRP is a composite material...
Abstract The Bouligand structure found in the dactyl club of mantis shrimps is known for its impact ...
Materials that are impact resistant enough for personal protection in sports, transport, and combat ...