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dc.contributor.authorMenani, Fouad-
dc.contributor.authorDehina, Mohamed Samy-
dc.contributor.otherBelouadeh, Zouheyr, Directeur de thèse-
dc.contributor.otherBouhelal, Abdelhamid, Directeur de thèse-
dc.contributor.otherSmaili, Arezki, Directeur de thèse-
dc.date.accessioned2025-11-10T12:31:42Z-
dc.date.available2025-11-10T12:31:42Z-
dc.date.issued2025-
dc.identifier.otherEP01027-
dc.identifier.urihttp://repository.enp.edu.dz/jspui/handle/123456789/11309-
dc.descriptionMémoire de Projet de Fin d’Études : Génie Mécanique : Alger, École Nationale Polytechnique : 2025fr_FR
dc.description.abstractThis project explores the development of biodegradable composite materials for 3D-printed small-scale wind turbine blades, emphasizing sustainability and mechanical performance. A composite of polylactic acid (PLA) reinforced with palm leaf fibers is designed, fabricated using a hydraulic press, and mechanically characterized through tensile testing and filament extrusion trials. A detailed literature review supports material selection and processing. The obtained properties are used in aeroelastic and aerodynamic simulations via QBlade, covering airfoil analysis, blade geometry, and structural deformation. The PLA–palm composite is compared with conventional materials like CFRP and GFRP. Results demonstrate promising performance, suggesting this bio-composite as a viable, eco-friendly alternative for wind energy applications.fr_FR
dc.language.isoenfr_FR
dc.subjectBiodegradable compositesfr_FR
dc.subjectPolylactic Acid (PLA)fr_FR
dc.subjectPalm Leaf Fibersfr_FR
dc.subjectMechanicalfr_FR
dc.subjectCharacterizationfr_FR
dc.subjectQBlade Simulationfr_FR
dc.titleFeasibility study on the use of date palm fibers in 3D printing : application to small wind turbine bladesfr_FR
dc.typeThesisfr_FR
Collection(s) :Département Génie Mécanique

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