In order to accurately predict the performance of 3D woven composites, it is necessary that realistic textile geometry is considered, since failure typically initiates at regions of high deformation or resin pockets. This paper presents the development of a finite element model based on the multi-chain digital element technique, as applied to simulate weaving and compaction of an orthogonal 3D woven composite. The model was reduced to the scale of the unit cell facilitating high fidelity results combined with relatively fast analysis times. The results of these simulations are compared with micro computed tomography (Cr) scans of a dry specimen of fabric subjected to in situ compaction. The model accurately depicted all of the key features ...
International audienceThe textile composite studied is a 3D woven composite. A unit cell is defined ...
The aeronautical industry faces new challenges regarding the reduction of fossil fuel consumption. O...
This paper introduces a novel approach to include the high transverse compliance of textile material...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
Numerical methods have become increasingly effective tools for analysis and design of composite mate...
AbstractModelling the mechanical performance of textile composites is typically based on idealised u...
For a 3D orthogonal carbon fibre weave, geometrical parameters characterising the unit cell were qua...
A common method to fabricate net-shaped three-dimensional (3D) woven preforms for composite T-joints...
For a 3D orthogonal carbon fibre weave, geometrical parameters characterising the unit cell were qua...
In this paper, we propose a novel simulation framework for accurately predicting the mechanical resp...
Advanced 3D woven composites have become an enabling technology in many industrial applications due ...
Yarn-scale modelling of textile preforms relies on the realistic reconstruction of internal geometry...
AbstractYarn-scale modelling of textile preforms relies on the realistic reconstruction of internal ...
The mechanical behaviour of 3D woven composite materials is affected by deformations as resulting fr...
Numerical prediction of woven composites mechanical properties has been a challenge since decades. A...
International audienceThe textile composite studied is a 3D woven composite. A unit cell is defined ...
The aeronautical industry faces new challenges regarding the reduction of fossil fuel consumption. O...
This paper introduces a novel approach to include the high transverse compliance of textile material...
In order to accurately predict the performance of 3D woven composites, it is necessary that realisti...
Numerical methods have become increasingly effective tools for analysis and design of composite mate...
AbstractModelling the mechanical performance of textile composites is typically based on idealised u...
For a 3D orthogonal carbon fibre weave, geometrical parameters characterising the unit cell were qua...
A common method to fabricate net-shaped three-dimensional (3D) woven preforms for composite T-joints...
For a 3D orthogonal carbon fibre weave, geometrical parameters characterising the unit cell were qua...
In this paper, we propose a novel simulation framework for accurately predicting the mechanical resp...
Advanced 3D woven composites have become an enabling technology in many industrial applications due ...
Yarn-scale modelling of textile preforms relies on the realistic reconstruction of internal geometry...
AbstractYarn-scale modelling of textile preforms relies on the realistic reconstruction of internal ...
The mechanical behaviour of 3D woven composite materials is affected by deformations as resulting fr...
Numerical prediction of woven composites mechanical properties has been a challenge since decades. A...
International audienceThe textile composite studied is a 3D woven composite. A unit cell is defined ...
The aeronautical industry faces new challenges regarding the reduction of fossil fuel consumption. O...
This paper introduces a novel approach to include the high transverse compliance of textile material...