Improving the interlaminar fracture toughness of fibre-reinforced composites based on thermosetting polymeric matrices is of significant interest to a broad range of applications. In the present work we report a multi-scale approach to synergistically toughen composites by combining nano- and macro-scale reinforcements inspired by natural composite materials. Carbon reinforcements with two different length scales are used: nano-scale carbon nanofibres (similar to 100 nm diameter) and macro-scale carbon z-pins (similar to 280 mu m diameter) to reinforce continuous carbon-fibre composites in the through thickness direction. The resultant composite, featuring three-dimensional reinforcement architecture, possesses triple toughening mechanisms ...
Composite materials are prone to delamination as they are weaker in the thickness direction. Carbon ...
This paper presents an investigation of a novel three-dimensional (3D) hybrid fibre-polymer composit...
Carbon fiber composites are becoming increasingly popular in the aerospace and automotive industries...
Improving the interlaminar fracture toughness of fibre-reinforced composites based on thermosetting ...
Multi-scale toughening is a key strategy employed by biological systems, made of intrinsically britt...
This paper presents an investigation into the synergistic improvements to the mode II interlaminar f...
Fibre reinforced polymer (FRP) composites are used in aerospace applications due to the increasing d...
Through-thickness reinforcements using z-pins is a highly effective method for increasing the delami...
Mode I interlaminar fracture toughness is investigated for a carbon-fibre composite toughened by nan...
This paper presents an experimental investigation into improvements to the interlaminar fracture tou...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
The stiffness degradation of hybrid carbon/glass fibre composites are investigated under cyclic load...
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...
Composite materials are prone to delamination as they are weaker in the thickness direction. Carbon ...
Composite materials are prone to delamination as they are weaker in the thickness direction. Carbon ...
This paper presents an investigation of a novel three-dimensional (3D) hybrid fibre-polymer composit...
Carbon fiber composites are becoming increasingly popular in the aerospace and automotive industries...
Improving the interlaminar fracture toughness of fibre-reinforced composites based on thermosetting ...
Multi-scale toughening is a key strategy employed by biological systems, made of intrinsically britt...
This paper presents an investigation into the synergistic improvements to the mode II interlaminar f...
Fibre reinforced polymer (FRP) composites are used in aerospace applications due to the increasing d...
Through-thickness reinforcements using z-pins is a highly effective method for increasing the delami...
Mode I interlaminar fracture toughness is investigated for a carbon-fibre composite toughened by nan...
This paper presents an experimental investigation into improvements to the interlaminar fracture tou...
The present paper demonstrates that multi-scale fillers such as carbon nanofibres (CNFs) and short c...
The stiffness degradation of hybrid carbon/glass fibre composites are investigated under cyclic load...
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...
Composite materials are prone to delamination as they are weaker in the thickness direction. Carbon ...
Composite materials are prone to delamination as they are weaker in the thickness direction. Carbon ...
This paper presents an investigation of a novel three-dimensional (3D) hybrid fibre-polymer composit...
Carbon fiber composites are becoming increasingly popular in the aerospace and automotive industries...