In this paper, a bio-inspired carbon-fibre/epoxy composite with nacre-like tiled microstructure is designed, synthesised and tested. Analytical models are developed to predict the energy dissipation and crack deflection properties of such composite, and the predictions for the stress-strain response during tile pull-out are validated against direct numerical simulation. Suitable configurations for tile geometry with interlocks are then identified (with dimensions of the order of 0.6 mm) and used for the subsequent prototyping. In-situ three-point bend tests are then carried out in a SEM environment, showing the capability of the interlocking micro-structure in deflecting the crack, avoiding sudden failure in the most highly loaded cross-sec...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
This thesis presents three novel bio-inspired microstructural concepts, for point-by-point tailorabl...
Carbon-Fibre Reinforced Polymers (CFRP) are widely regarded as the material of choice for many aeros...
Inthiswork,anacre-inspiredCarbonFibreReinforcedPolymer(CFRP)compositeis designed,synthesisedandteste...
Translaminar fracture toughness is a vital property governing the notch sensitivity and damage toler...
Conventional fiber-reinforced composites suffer from the formation of critical clusters of correlate...
This paper investigates whether the toughening mechanisms of a biological crossed-lamellar microstru...
Composites are attractive materials because of their high specific stiffness and specific strength, ...
In this paper, we demonstrate that a novel hybrid composite of aluminium and Carbon Fibre Reinforced...
© 2017 Dr. Abdallah GhazlanAccidental and deliberate loads on civil and military structures continue...
The biological materials nacre and wood are renowned for their impressive combination of toughness ...
The use of fibre reinforced polymers is rapidly increasing in a range of applications, from aviation...
Carefully placed patterns of micro-cuts have been inserted in the microstructure of Cross-Ply (CP) a...
In this work, we demonstrate for the first time that the inherent low performance to out-of-plane lo...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
This thesis presents three novel bio-inspired microstructural concepts, for point-by-point tailorabl...
Carbon-Fibre Reinforced Polymers (CFRP) are widely regarded as the material of choice for many aeros...
Inthiswork,anacre-inspiredCarbonFibreReinforcedPolymer(CFRP)compositeis designed,synthesisedandteste...
Translaminar fracture toughness is a vital property governing the notch sensitivity and damage toler...
Conventional fiber-reinforced composites suffer from the formation of critical clusters of correlate...
This paper investigates whether the toughening mechanisms of a biological crossed-lamellar microstru...
Composites are attractive materials because of their high specific stiffness and specific strength, ...
In this paper, we demonstrate that a novel hybrid composite of aluminium and Carbon Fibre Reinforced...
© 2017 Dr. Abdallah GhazlanAccidental and deliberate loads on civil and military structures continue...
The biological materials nacre and wood are renowned for their impressive combination of toughness ...
The use of fibre reinforced polymers is rapidly increasing in a range of applications, from aviation...
Carefully placed patterns of micro-cuts have been inserted in the microstructure of Cross-Ply (CP) a...
In this work, we demonstrate for the first time that the inherent low performance to out-of-plane lo...
Carbon fibre composites possess excellent mechanical properties, but suffer from brittleness. Hybrid...
In this work, we investigate the toughness of an inter-layer Self-Reinforced Polypropylene/Carbon Fi...
This thesis presents three novel bio-inspired microstructural concepts, for point-by-point tailorabl...