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Titre: Damage Modelling in Thermoplastic Laminates Reinforced with Steel and Glass Fibres under Quasi-Static Indentation Loading at Low-Velocity
Auteur(s): Mahdad, M'Hamed
Ait Saada, Aicha
Belaidi, Idir
Mots-clés: Indentation
Laminates
Damage
Energy absorption
Date de publication: 2019
Editeur: Sage journals
Collection/Numéro: Composites and Advanced Materials;
Résumé: This paper deals with experimental and numerical investigations of the composites damages with ductile and fragile reinforcement under quasi-static indentation loading. The main goal of the work is to increase the post-damage residual strength and ductility of thermoplastic composite. Two types of composite laminates with polypropylene (PP) matrix are tested: glass fibre laminate (GFPP) and steel fine wire mesh laminate (SWPP). The specimens are [0° 90°]2s stacking sequence and prepared by using a compression moulding technique. Quasi-static indentation tests were performed with two distinct penetration scales under low velocity (1.2 mm/min). The diameter of the hemispherical indenter is 16 mm. The failure mechanisms of composite layers were examined by the field emission scanning electron microscope (SEM). The results show that the failure mode of SWPP laminates is principally dominated by the plastic deformation component. In contrast, the GFPP laminate exhibits a fragile behaviour which is related to the fragile failure of glass fibres. In addition, the SEM shows that matrix cracking, fibre breakage, debonding and fibre pull out are the major damages observed around the indentation area. A model based on the combined use of plasticity, damage and fracture, was developed and applied to simulate quasi-static indentation behaviour and predict the resulting damage
URI/URL: https://journals.sagepub.com/doi/full/10.1177/096369351802700606
http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/6392
ISSN: 1568-5519
Collection(s) :Publications Internationales

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