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Increasing numbers of companies now have sustainability, corporate social responsibility and ethical behaviour woven into their growth plans, not confined to a CSR department but dealt with in the CEO's and CMO's offices.
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It is also observed that the shear behaviour of woven composites is more rate-dependant than their tensile behaviour.
Experimental observations confirm strain-rate-dependant behaviour of woven fabric composites; however, there is no consistent data available on characterization and modelling of this behaviour.
This paper presents a detailed analysis on ballistic impact behaviour of woven fabrics using the finite element method.
The tensile behaviour of woven reinforcements is specific because the undulations due to weaving lead to strong non-linearities at the beginning of the loading.
The knowledge of the mechanical behaviour of woven composite reinforcements is necessary to analyse and simulate the forming processes of these composites.
Good prediction of draping behaviour of woven textiles is accessible, but requires a set of preliminary experiments to well characterise the fabric in question.
In this study, the effects of hole diameter and hole location on the lateral buckling behaviour of woven fabric laminated composite cantilever beams have been investigated.
The aim of this work was to establish the important parameters that control the hot compaction behaviour of woven oriented polypropylene.
This paper presents experimental results on rate-dependant damage behaviour of woven composites and using the same test setup, compares fabric composites with three different fibre architectures (i.e. plain weave, 2 × 2 twill weaves and 8-harness satin weaves) and two different materials (i.e. carbon/epoxy and carbon/BMI).
The model is based on a previous continuum damage approach [Hochard C, Aubourg PA, Charles JP. Modelling of the mechanical behaviour of woven fabric CFRP laminates up to failure. Compos Sci Technol 2001 61 221 30] and a new non-local fibre rupture criterion.
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