peer-reviewedThe use of traditional two-dimensional (2D) fibre preforms can be associated with poor out-of-plane and interlaminar mechanical performance, particularly in response to impact loads. Such preforms comprise multiple plies which necessitate labour-intensive ply cutting and assembly steps. 3D woven textiles, due to the incorporation of through-thickness yarns, have been found to exhibit superior out-of-plane mechanical properties whilst simultaneously reducing ply-assembly time and cost (single-piece preform construction). Their delamination resistance and damage tolerance have been extensively investigated over the last number of years; however, there is a paucity of published work on their in-plane and out-of-plane mechanical pr...
Two through-thickness angle-interlock (TTAIL) 3D weaves especially designed to minimise crimp and wi...
3D weaving technology enables the manufacturing of advanced near net-shape profiles, through incorpo...
The purpose of this research was to determine the mechanical properties of 2D and 3D braided textile...
Laminated composites are increasingly employed in a variety of industries ranging from Aerospace to ...
This paper summarizes three areas of research which were performed to characterize out-of-plane prop...
ABSTRACT: The usage of laminated composite materials in critical applications requiring high specifi...
This paper presents a comprehensive study on the tensile, compressive, and flexural performance of s...
Three dimensional (3D) woven composites have attracted the interest of academia and industry thanks ...
In this work, three types of 3D woven fabric (orthogonal, angle interlock, and layer-to-layer) were ...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
Three-dimensional woven composites were developed to improve the through-thickness properties which ...
The effect of the weaving architecture and the z-binding yarns, for 2D and 3D woven composites on th...
AbstractThis paper presents a comprehensive study on the tensile, compressive, and flexural performa...
Anisotropic textile composites show nonlinear deformation and complex failure behaviour. In particu...
Composites made from three-dimensional (3D) textile preforms can reduce both the weight and manufac...
Two through-thickness angle-interlock (TTAIL) 3D weaves especially designed to minimise crimp and wi...
3D weaving technology enables the manufacturing of advanced near net-shape profiles, through incorpo...
The purpose of this research was to determine the mechanical properties of 2D and 3D braided textile...
Laminated composites are increasingly employed in a variety of industries ranging from Aerospace to ...
This paper summarizes three areas of research which were performed to characterize out-of-plane prop...
ABSTRACT: The usage of laminated composite materials in critical applications requiring high specifi...
This paper presents a comprehensive study on the tensile, compressive, and flexural performance of s...
Three dimensional (3D) woven composites have attracted the interest of academia and industry thanks ...
In this work, three types of 3D woven fabric (orthogonal, angle interlock, and layer-to-layer) were ...
An experimental and numerical investigation was undertaken to characterise the collapse of 3D orthog...
Three-dimensional woven composites were developed to improve the through-thickness properties which ...
The effect of the weaving architecture and the z-binding yarns, for 2D and 3D woven composites on th...
AbstractThis paper presents a comprehensive study on the tensile, compressive, and flexural performa...
Anisotropic textile composites show nonlinear deformation and complex failure behaviour. In particu...
Composites made from three-dimensional (3D) textile preforms can reduce both the weight and manufac...
Two through-thickness angle-interlock (TTAIL) 3D weaves especially designed to minimise crimp and wi...
3D weaving technology enables the manufacturing of advanced near net-shape profiles, through incorpo...
The purpose of this research was to determine the mechanical properties of 2D and 3D braided textile...