An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthogonal woven carbon fibre composites during the load cases of in-plane tension, in-plane compression and out-of-plane bending. Two different fibre architectures, varying only by the density of through-thickness reinforcement, were investigated. Cantilever beam tests were carried out to isolate two distinct collapse mechanisms, i.e. bending governed and shear governed deformation. A qualitative comparison was made with a similar UD-laminate material. 3D woven composites exhibited significantly reduced delamination. An investigation into the efficacy of an embedded element modelling strategy for in-plane tension, in-plane compression and out-of-p...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...
AbstractThis paper presents a comprehensive study on the tensile, compressive, and flexural performa...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
AbstractAn experimental and numerical investigation was undertaken to characterise the collapse of 3...
Two noncrimp 3D woven carbon fibre composites (through thickness angle interlock) of binder volume f...
Two noncrimp 3D woven carbon fibre composites (through thickness angle interlock) of binder volume f...
Laminated composites are increasingly employed in a variety of industries ranging from Aerospace to ...
3D woven composites provide improved out-of-plane performance over their two-dimensional counterpart...
This paper presents an experimental and numerical investigation into the dynamic response of three-d...
Modern technological capabilities make it possible to produce 3D spatially-reinforced for polymer co...
Modern technological make it possible to produce three-dimensional (3D) reinforcement for polymer co...
peer-reviewedThe use of traditional two-dimensional (2D) fibre preforms can be associated with poor ...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...
AbstractThis paper presents a comprehensive study on the tensile, compressive, and flexural performa...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
AbstractAn experimental and numerical investigation was undertaken to characterise the collapse of 3...
Two noncrimp 3D woven carbon fibre composites (through thickness angle interlock) of binder volume f...
Two noncrimp 3D woven carbon fibre composites (through thickness angle interlock) of binder volume f...
Laminated composites are increasingly employed in a variety of industries ranging from Aerospace to ...
3D woven composites provide improved out-of-plane performance over their two-dimensional counterpart...
This paper presents an experimental and numerical investigation into the dynamic response of three-d...
Modern technological capabilities make it possible to produce 3D spatially-reinforced for polymer co...
Modern technological make it possible to produce three-dimensional (3D) reinforcement for polymer co...
peer-reviewedThe use of traditional two-dimensional (2D) fibre preforms can be associated with poor ...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...
AbstractThis paper presents a comprehensive study on the tensile, compressive, and flexural performa...
The compressive response of a three-dimensional (3D) non-interlaced composite comprising three ortho...