Automated Fibre Placement (AFP) is a manufacturing technique to produce large, high quality composite parts, where preimpregnated carbon fibre tapes are laid side-by-side to generate the composite preform. Thickness changes within a component are realised through internal ply terminations, with the tapes being cut perpendicular to the fibre direction. In plies laid up at an angle to the taper direction, the AFP tape cuts create saw-tooth shaped ply drop tips. This increases the size of resin rich zones and enlarges the region where stress concentrations and cracks can develop, which amplifies the risk of failure. This study investigates the effect of simulated AFP saw-tooth ply drop tips, created by hand layup, on the mechanical properties ...
The advent of composite materials in aircraft and automotive structures has recently revealed the la...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
Automated Fibre Placement (AFP) is a manufacturing technique to produce large, high quality composit...
The thickness of a laminated composite structure can be varied by reducing the number of plies throu...
The thickness of a laminated composite structure can be varied by reducing the number of plies throu...
Automated Fibre Placement (AFP) is a new robot technology that has the advantages of both the rapid ...
Automated tape placement is seen as a promising technique for the manufacture of net-shape dry fibr...
The effect of laminate lay-up upon the evolution of damage and upon the multi-axial failure locus of...
Composites can be manufactured in numerous ways. Among the available methods, Automated Fiber Placem...
Automated fibre placement (AFP) enables the trajectory of unidirectional composite tape to be optimi...
An automated fibre placement method has been developed to build through-thickness reinforcement into...
The introduction of Variable-Stiffness Laminates requires not only the use of advanced numerical sim...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The advent of composite materials in aircraft and automotive structures has recently revealed the la...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
Automated Fibre Placement (AFP) is a manufacturing technique to produce large, high quality composit...
The thickness of a laminated composite structure can be varied by reducing the number of plies throu...
The thickness of a laminated composite structure can be varied by reducing the number of plies throu...
Automated Fibre Placement (AFP) is a new robot technology that has the advantages of both the rapid ...
Automated tape placement is seen as a promising technique for the manufacture of net-shape dry fibr...
The effect of laminate lay-up upon the evolution of damage and upon the multi-axial failure locus of...
Composites can be manufactured in numerous ways. Among the available methods, Automated Fiber Placem...
Automated fibre placement (AFP) enables the trajectory of unidirectional composite tape to be optimi...
An automated fibre placement method has been developed to build through-thickness reinforcement into...
The introduction of Variable-Stiffness Laminates requires not only the use of advanced numerical sim...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The advent of composite materials in aircraft and automotive structures has recently revealed the la...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...
The influence of ply-drop position in thickness direction under fatigue loading (R = -1) has been st...