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Characterization of a New Fully Recycled Carbon Fiber Reinforced Composite Subjected to High Strain Rate Tension

Article dans une revue avec comité de lecture
Auteur
MEFTAH, Hassen
TAMBOURA, Sahbi
301055 جامعة سوسة = Université de Sousse = University of Sousse [USO]
BENDALY, Hachmi
301055 جامعة سوسة = Université de Sousse = University of Sousse [USO]
ccTCHARKHTCHI, Abbas
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccFITOUSSI, Joseph

URI
http://hdl.handle.net/10985/15738
DOI
10.1007/s10443-017-9632-6
Date
2017
Journal
Applied Composite Materials

Résumé

The aim of this study is the complete physicochemical characterization and strain rate effect multi-scale analysis of a new fully recycled carbon fiber reinforced composites for automotive crash application. Two composites made of 20% wt short recycled carbon fibers (CF) are obtained by injection molding. The morphology and the degree of dispersion of CF in the matrixes were examined using a new ultrasonic method and SEM. High strain tensile behavior up to 100 s-1 is investigated. In order to avoid perturbation due to inertial effect and wave propagation, the specimen geometry was optimized. The elastic properties appear to be insensitive to the strain rate. However, a high strain rate effect on the local visco-plasticity of the matrix and fiber/matrix interface visco-damageable behavior is emphasized. The predominant damage mechanisms evolve from generalized matrix local ductility at low strain rate regime to fiber/matrix interface debonding and fibers pull-out at high strain rate regime.

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  • Thermal aging influence on the damage mechanisms of fully recycled composite-reinforced polypropylene/polyethylene blend 
    Article dans une revue avec comité de lecture
    MEFTAH, Hassen; TAMBOURA, Sahbi; BENDALY, Hachmi; ccTCHARKHTCHI, Abbas; ccFITOUSSI, Joseph (Wiley, 2019)
    The main aim of this work is to study the effect of thermal aging on damage mechanisms of a totally recycled composite. The studied material was elaborated by injection molding from a mixture of both recycled matrix ...
  • Experimental and numerical multi-scale approach for Sheet-Molding-Compound composites fatigue prediction based on fiber-matrix interface cyclic damage 
    Article dans une revue avec comité de lecture
    TAMBOURA, Sahbi; AYARI, Houssem; ccSHIRINBAYAN, Mohammadali; LARIBI, Mohamad-Amine; BENDALY, Hachmi; SIDHOM, Habib; ccTCHARKHTCHI, Abbas; ccFITOUSSI, Joseph (Elsevier, 2020)
    In this paper, a multi-scale approach is proposed to predict the stiffness reduction of a Sheet-Molding-Compound (SMC) composite submitted to low cycle fatigue (until 2.105 cycles). Strain-controlled tensile fatigue tests ...
  • Thermal aging kinetic and effects on mechanical behavior of fully recycled composite based on polypropylene/polyethylene blend 
    Article dans une revue avec comité de lecture
    TAMBOURA, Sahbi; BENDALY, Hachmi; FITOUSSI, Jean Paul; MEFTAH, Hicham; ccTCHARKHTCHI, Abbas (Wiley, 2018)
    The effect of thermal oxidation of a fully recycled carbon fibers reinforced stabilized polypropylene/polyethylene blend on the mechanical properties has been studied at 120, 130 and 140 °C. In a first step, several analyses ...
  • Bi-phasic water diffusion in sheet molding compound composite 
    Article dans une revue avec comité de lecture
    ABDESSALEM, Abir; TAMBOURA, Sahbi; BEN DALY, Hachmi; ccTCHARKHTCHI, Abbas; ccFITOUSSI, Joseph (Wiley, 2020)
    Sheet molding compound (SMC) composite has been studied under humid-aging conditions. Diffusion of water within the material, as measured by gravimetry, was found to be in good agreement with the “Langmuir-type” diffusion ...
  • Fast fatigue life prediction of short fiber reinforced composites using a new hybrid damage approach: Application to SMC 
    Article dans une revue avec comité de lecture
    LARIBI, Mohamad-Amine; TAMBOURA, Sahbi; BEN DALI, Hachmi; ccTCHARKHTCHI, Abbas; ccFITOUSSI, Joseph (Elsevier, 2018)
    Industrial design of Short Fiber Reinforced Composites (SFRC) structures is subject to several compounding and processing steps of optimization. Moreover, these structures are often submitted to fatigue loading. Therefore, ...

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