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Evaluation of the Failure Mechanism in Polyamide Nanofibre Veil Toughened Hybrid Carbon/Glass Fibre Composites

Ashley Blythe, Bronwyn Fox, Mostafa Nikzad, Boris Eisenbart, Boon Xian Chai, P. Blanchard, Jeffrey Dahl

2022Materials21 citationsDOIOpen Access PDF

Abstract

polyamide 6,6 nanofibre veil to localise cracking to promote a gradual failure. The pseudo-ductile response of these novel stacking sequences examined under quasi-static three-point bending show a change to the failure mechanism. The change in failure mechanism due to the interfacial toughening is examined via SEM micrographs. The incorporation of veil toughening led to a change in the dominant failure mechanism, resulting in fibre yielding by localised kinking and reduced instances of buckling failure. In alternated carbon and glass fibre samples with glass fibre undertaking compression, a pseudo-ductile response with veil interlayering was observed. The localisation of the fibre failure, due to the inclusion of the veil, resulted in kink band formations which were found to be predictable in previous micro buckling models. The localisation of failure by the veil interlayer resulted in a pseudo-ductile response increasing the strain before failure by 24% compared with control samples.

Topics & Concepts

Materials scienceComposite materialPolyamideComposite numberFailure mechanismGlass fiberBucklingBendingTougheningCarbon fibersCrackingToughnessMechanical Behavior of CompositesFiber-reinforced polymer compositesCarbon Nanotubes in Composites
Evaluation of the Failure Mechanism in Polyamide Nanofibre Veil Toughened Hybrid Carbon/Glass Fibre Composites | Litcius