In this paper, we propose a novel simulation framework for accurately predicting the mechanical response of highly compacted triaxial braided composites using meso-scale finite element models. Unit cells with a realistic internal geometry are generated within an automated simulation work-flow. Local volumetric interpenetrations are removed from a nominal geometry in a fictitious thermal simulation step. A compaction simulation of a single textile layer is performed to the desired target fibre volume fraction while implicitly considering multiple plies in different nesting configurations through periodic boundary conditions. For mechanical simulation, a matrix pocket mesh is created from a reconstruction of the deformed textile. A novel mesh...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
A multiscale progressive damage modelling methodology for 3-dimensional (3D) woven composites is pre...
Results from a research study concerned with developing an experimentally validated computational to...
Composite materials have brought new development and sizing possibilities for structural components ...
A meso-scale modelling framework is proposed to simulate the 3D woven fibre architectures and the me...
A meso-scale modelling framework is proposed to simulate the 3D woven fibre architectures and the me...
AbstractModelling the mechanical performance of textile composites is typically based on idealised u...
A numerical approach to model the elasto-plastic and tensile damage response of tri-axially braided ...
Meso-scale finite element method (FEM) is considered as the most effective and economical numerical ...
Braided textile-reinforced composites have become increasingly attractive as protection materials th...
Technical textiles are increasingly being engineered and used in challenging applications, in areas ...
Meso-scale (unit cell of an impregnated textile reinforcement) finite element (FE) modelling of text...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
iii Carbon fiber composite materials are being used in aerospace applications due to their excellent...
A reasonable boundary condition for the meso-scale finite element (FE) simulation of textile composi...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
A multiscale progressive damage modelling methodology for 3-dimensional (3D) woven composites is pre...
Results from a research study concerned with developing an experimentally validated computational to...
Composite materials have brought new development and sizing possibilities for structural components ...
A meso-scale modelling framework is proposed to simulate the 3D woven fibre architectures and the me...
A meso-scale modelling framework is proposed to simulate the 3D woven fibre architectures and the me...
AbstractModelling the mechanical performance of textile composites is typically based on idealised u...
A numerical approach to model the elasto-plastic and tensile damage response of tri-axially braided ...
Meso-scale finite element method (FEM) is considered as the most effective and economical numerical ...
Braided textile-reinforced composites have become increasingly attractive as protection materials th...
Technical textiles are increasingly being engineered and used in challenging applications, in areas ...
Meso-scale (unit cell of an impregnated textile reinforcement) finite element (FE) modelling of text...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
iii Carbon fiber composite materials are being used in aerospace applications due to their excellent...
A reasonable boundary condition for the meso-scale finite element (FE) simulation of textile composi...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
A multiscale progressive damage modelling methodology for 3-dimensional (3D) woven composites is pre...
Results from a research study concerned with developing an experimentally validated computational to...