Experimental study of environmentally Friendly composite materials Behavior in aeronautical applications

D. Basaid, A. Benmounah, C. Aribi

Abstract


Abstract: This study is a part of a work in progress on the mechanical behavior of laminate in various modified epoxy matrices. we begin with a laminate six folds with fiberglass taffeta, and epoxy matrix cross linked by aliphatic Amine called MEDAPOXY STR, this resin isthe report weight of 0,67%. The treatment of the results shows that thein the form of a kit of two elements ,a monomer and a hardener with reticulation of monomer by this Amine is incomplete what provokes a plastic domain on the mechanical behavior of the matrix, concerning composites made from these elements, the results show that the elastic domain is dependent on the elasticity of fibers used and not on thematrix. The control by ultrasound can be considered as another way to measure and follow-up of the parameters elasticity of the elaborate laminate.


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References


Pascault, J.-P.;Williams, R.J. Epoxy polymers: new materials and innovations. John Wiley & Sons, 2009.

Shokrieh, M.M.;Esmkhani, M. Experimental Investigation on Fatigue Behavior of Epoxy Resin under Load and Displacement Controls. Ulūm va

Tiknuluzhī-i Pulīmir 27 (2014) 382

Tominaga, Y.;Shimamoto, D.;Hotta, Y. Curing Effects on Interfacial Adhesion between Recycled Carbon Fiber and Epoxy Resin Heated by Microwave Irradiation. Materials 11 (2018) 493.

Haward, R.N. The physics of glassy polymers.Springer Science & Business Media, 2012

Dal Maso, F.;Meziere, J. Calcul des propriétés élastiques des tissus utilisés dans les matériaux composites. Revue de l'institut Français du pétrole 53 (1998) 857-870.

Barrere, C.;Dal Maso, F. Résines époxy réticulées par des polyamines: structure et propriétés. Revue de l'institut français du pétrole 52 (1997) 317-335.

Aribi, C.;Bezzazi, B.;Mir, A. Experimental study for the choice of a matrix epoxy resin for the elaboration of laminates. Key Engineering Materials 550 (2013) 17-23

Youakim, S.A.;Karbhari, V.M. An approach to determine long-term behavior of concrete members prestressed with FRP tendons. Construction and Building Materials 21 (2007) 1052-1060

Garcia, F.G.;Soares, B.G. Determination of the

epoxide equivalent weight of epoxy resins based on diglycidyl ether of bisphenol A (DGEBA) by proton nuclear magnetic resonance. Polymer Testing 22 (2003) 51-56.

Mezlini, S. Etude de l'usure par abrasion d'alliages d'aluminium. Ecully, Ecole centrale de Lyon, 2003.

Li, H.;Wang, L.;Jacob, K.;Wong, C. Syntheses and characterizations of thermally degradable epoxy resins. III. Journal of Polymer Science Part A: Polymer Chemistry 40 (2002) 1796-1807.

Barton, J.M. The application of differential scanning calorimetry (DSC) to the study of epoxy resin curing reactions (Epoxy resins and composites I). Springer, 1985. 111-154.

Ho, R. Handbook of univariate and multivariate data analysis and interpretation with SPSS. Chapman and Hall/CRC, 2006.

Meshgin, P.;Choi, K.-K.;Taha, M.M.R. Experimental and analytical investigations of creep of epoxy adhesive at the concrete–FRP interfaces.International Journal of Adhesion and Adhesives 29(2009) 56-66.

Wanin, M. Évaluation non destructive de la qualité des matériaux (Partie 1). Ed. Techniques Ingénieur, 2001.

Kinloch, A.;Masania, K.;Taylor, A.;Sprenger,. S.;Egan, D. The fracture of glass-fibre-reinforced epoxy composites using nanoparticle-modified matrices. Journal of Materials Science 43 (2008)1151-1154.

Gan, S.;Gillham, J.K.;Prime, R. A methodology for characterizing reactive coatings: Time–temperature–transformation (TTT) analysis of the competition between cure, evaporation, and thermal degradation for an epoxy‐phenolic system. Journal of applied polymer science 37 (1989) 803-816.

Aufray, M. Caractérisation physico-chimique des interphases époxyde-amine/oxyde ou hydroxyde métallique, et de leurs constituants. INSA de Lyon,2005.

Subramanian, S.;Reifsnider, K.;Stinchcomb, W. A cumulative damage model to predict the fatigue life of composite laminates including the effect of a fibre-matrix interphase. International Journal of Fatigue 17 (1995) 343-351.

Razvan, A.;Reifsnider, K. Fiber fracture and strength degradation in unidirectional graphite/epoxy composite materials. Theoretical and applied fracture mechanics 16 (1991) 81-89.


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