A macroscale finite element (FE) model was developed to simulate the forming behaviour of biaxial fabrics, incorporating the effects of bending stiffness to predict fabric wrinkling. The dependency of the bending stiffness on the fibre orientation was addressed by extending a non-orthogonal constitutive framework previously developed for biaxial fabric materials. The nonlinear bending behaviour of a biaxial non-crimp fabric (NCF) with pillar stitches was characterised by a revised cantilever test using structured light scanning to measure specimen curvature, providing input data for the material model. Simulations were performed to replicate the bias-extension behaviour of the NCF material, showing good agreement with experimental data. Wri...
Liquid molded composites comprising layers of unidirectional non-crimp fabric (UDNCF) offer high lig...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
This paper presents a novel finite element based approach able to represent the complex architecture...
A macroscale finite element (FE) model was developed to simulate the forming behaviour of biaxial fa...
A macroscale finite element (FE) model was developed to simulate the forming behaviour of biaxial fa...
A macroscopic finite element model has been established to investigate the forming-induced wrinkling...
The forming behaviour of non-crimp fabric (NCF) was simulated using finite element (FE) analysis inc...
Modelling the forming process for engineering fabrics and textile composites using a mechanical appr...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
The coupled biaxial tension and shear-biaxial tension deformation responses of a unidirectional non-...
The coupled biaxial tension and shear-biaxial tension deformation responses of a unidirectional non-...
Thin composite shell structures manufactured from stitched unidirectional non-crimp fabrics (UD-NCF)...
Liquid molded composites comprising layers of unidirectional non-crimp fabric (UDNCF) offer high lig...
Liquid molded composites comprising layers of unidirectional non-crimp fabric (UDNCF) offer high lig...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
This paper presents a novel finite element based approach able to represent the complex architecture...
A macroscale finite element (FE) model was developed to simulate the forming behaviour of biaxial fa...
A macroscale finite element (FE) model was developed to simulate the forming behaviour of biaxial fa...
A macroscopic finite element model has been established to investigate the forming-induced wrinkling...
The forming behaviour of non-crimp fabric (NCF) was simulated using finite element (FE) analysis inc...
Modelling the forming process for engineering fabrics and textile composites using a mechanical appr...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
The coupled biaxial tension and shear-biaxial tension deformation responses of a unidirectional non-...
The coupled biaxial tension and shear-biaxial tension deformation responses of a unidirectional non-...
Thin composite shell structures manufactured from stitched unidirectional non-crimp fabrics (UD-NCF)...
Liquid molded composites comprising layers of unidirectional non-crimp fabric (UDNCF) offer high lig...
Liquid molded composites comprising layers of unidirectional non-crimp fabric (UDNCF) offer high lig...
To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal...
This paper presents a novel finite element based approach able to represent the complex architecture...