Influence of in-plane bending behaviour on textile composite reinforcement forming

Влияние поведения при изгибе в плоскости на формовку текстильного композитного армирования
Julien Colmars, Renzi Bai, Eduardo Guzman-Maldonado, Ruochen Zheng
2024-03-21

composite reinforcement draping experimentsfibrous shell finite elementin-plane bending behaviourneighbouring elements methodtextile composite reinforcement
The deformation of textile composite reinforcement is influenced by its fibrous composition. In-plane bending behaviour is an inherent aspect of textile reinforcement, yet it is frequently overlooked. The paper elucidates the significant influence of in-plane bending behaviour on fibre orientation during forming process and emphasizes the necessity of accounting for in-plane bending virtual work to prevent non-physical deformation mode. To this purpose in-plane bending calculation is implemented into a fibrous shell finite element by using the neighbouring elements method. Numerical spurious mode involving in-plane shear is avoided due to the new approach. Finally, the model is validated by comparing with composite reinforcement draping experiments: fibre orientations and distributions of shear angles are simulated in good agreement with experiments and give better results than the simulations neglecting the in-plane bending behaviour.
1
Accounting for in-plane bending virtual work is necessary to prevent non-physical deformation modes in simulations.
2
An in-plane bending calculation was implemented in a fibrous shell finite element using the neighbouring elements method.
3
In-plane bending behaviour of textile reinforcement significantly influences fibre orientation during the forming process.
4
Model validation against draping experiments shows simulated fibre orientations and shear angle distributions agree well with experiments and outperform simulations that neglect in-plane bending.
5
The new approach avoids numerical spurious modes involving in-plane shear.

Textile composite reinforcement (fibrous shell during forming)

Influence of in-plane bending behaviour and its virtual work on fibre orientation, shear angle distribution, and prevention of spurious in-plane shear deformation during the forming process, as modeled via a fibrous shell finite element with neighbouring elements method

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2024-03-21
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Authors
Julien Colmars
Renzi Bai
Eduardo Guzman-Maldonado
Ruochen Zheng
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