Search results for "fibres"

showing 10 items of 122 documents

Statistique de l'efficacité de blindage de matériaux composites pour la 5G: méthodes avancées d'échantillonnage

2020

International audience; Cette proposition présente une méthodologie pour l'estimation statistique du niveau de protection offert par des matériaux composites constitués par des fibres de carbone sur une large gamme de fréquences contenant la bande 5G. La variabilité géométrique des nanostructures de carbone (essentiellement en termes de formes et de dimensions) impose, dans un premier temps, une caractérisation fréquentielle précise de la distribution statistique des propriétés diélectriques des matériaux. La propagation, dans un second temps, des incertitudes précédentes au niveau de l'efficacité de blindage des matériaux apporte des contraintes particulières quand aux méthodes statistique…

matériaux composites[SPI.ELEC]Engineering Sciences [physics]/Electromagnetism[SPI]Engineering Sciences [physics]blindage électromagnétiqueméthode d'homogénéisation[SPI] Engineering Sciences [physics][SPI.ELEC] Engineering Sciences [physics]/Electromagnetismstatistiquefibres de carbone[SPI.TRON] Engineering Sciences [physics]/Electronics[SPI.TRON]Engineering Sciences [physics]/Electronics
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Predicting stiffness and strength of birch pulp:Polylactic acid composites

2016

This paper studies failure of birch pulp–polylactic acid composites. Stiffness and strength are calculated using the theory of short fibre composites and the results are compared to experimental data. The results differed from the experimental values by 0–6%. With less aligned fibres the short fibre theory is not feasible. The performance of the 40 wt% birch pulp – polylactic acid composite is predicted with X-ray microtomography based finite element modelling, and the results are compared with experiments. Stiffness results differed from experiments by 1–17% . By adding into the models a third material phase representing the interface between the fibres and the matrix, the stress–strain c…

microtomographyMaterials scienceComposite number02 engineering and technologyengineering.materialshort fibre composites strengthchemistry.chemical_compoundfibres0203 mechanical engineeringPolylactic acidimage analysisMaterials Chemistrymedicinepolymer matrix compositesComposite materialta216finite element modellingProperTunekuidutta214modelta114Mechanical EngineeringPulp (paper)Wood-plastic compositeStiffness021001 nanoscience & nanotechnologyMicrostructureFinite element method020303 mechanical engineering & transportschemistryshort fibre compositesMechanics of Materialskuva-analyysiCeramics and Compositesengineeringmedicine.symptomelastic properties0210 nano-technologystrengthelastiv properties
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Influence Des Conditions De Fabrication Sur Les Propriétés Mécaniques Et Physico-Chimiques D'un Composite Lin/Époxy Unidirectionnel

2017

This study focused on the development of a manufacturing process of laminated composites made from DGEBA epoxy matrix and flax fibers. The aim is to produce a material with good and low dispersed mechanical properties. Thermocompression is the chosen manufacturing method because it enables the production of composite with high fiber content. We used separated matrix and reinforcement, and not a prepreg, to fully control each component of our composites. Several curing cycle parameters have been tested in order to optimize mechanical properties and processing time. A multi-scale analyze has been carried on the produced composites in order to quantify the range of properties’ modifications. T…

mise en œuvre[SPI] Engineering Sciences [physics]époxymanufacturing processcompositeFlax fibresFibres de linepoxy
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: Effects of process conditions on mechanical and physicochemical properties of unidirectional flax/epoxy composite

2017

National audience; This study focused on the development of a manufacturing process of laminated composites made from DGEBA epoxy matrix and flax fibers. The aim is to produce a material with good and low dispersed mechanical properties. Thermocompression is the chosen manufacturing method because it enables the production of composite with high fiber content. We used separated matrix and reinforcement, and not a prepreg, to fully control each component of our composites. Several curing cycle parameters have been tested in order to optimize mechanical properties and processing time. A multi-scale analyze has been carried on the produced composites in order to quantify the range of propertie…

mise en œuvre[SPI]Engineering Sciences [physics][ SPI.MAT ] Engineering Sciences [physics]/Materialsépoxymanufacturing processFibres de lincompositeFlax fibres[SPI.MAT] Engineering Sciences [physics]/MaterialsComputingMilieux_MISCELLANEOUSepoxy[SPI.MAT]Engineering Sciences [physics]/Materials
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Durcissement aux radiations de fibres optiques dopées terres rares et d'amplificateurs 'a fibres optiques

2011

National audience; Cette étude vise à comprendre les effets d'une irradiation Ȗ sur les propriétés optiques et structurales des fibres dopées aux Terres Rares en vue de leur utilisation dans des amplificateurs à fibre réalisés pour des applications spatiales. L'enjeu majeur de durcissement de ces composants est abordé via des techniques telles que le chargement en hydrogène et/ou le co-dopage au Cérium du cœur des fibres optiques. L'identification des centres responsables de l'atténuation induite par irradiation et la compréhension des mécanismes de dégradation mis en jeu sont des étapes indispensables au développement de ces fibres.

radiations[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]active optical fiber radiation effects rare earthterres raresdurcissementfibres optiques actives
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Fibre fragment distribution in a single-fibre composite tension test

2001

Abstract Single fibre fragmentation tests are performed for brittle fibres with Weibull strength distribution and different surface treatments. The fragmentation process is modelled and closed-form expressions for break spacing distribution are obtained. The model accounts for the effect of finite fibre length on the initial fragmentation as well as for break interaction on the advanced fragmentation stage. It is assumed that the exclusion zone due to fibre–matrix interface failure and stress recovery in the fibre is linearly dependent on the applied load. This assumption is validated experimentally. The derived theoretical average fragment length dependence on applied load is used to deter…

single fibre compositeanalytical modellingMaterials scienceMechanical EngineeringGlass fiberComposite numberThermosetting polymerEpoxySingle fibreIndustrial and Manufacturing EngineeringfibresBrittlenessMechanics of Materialsfragmentationvisual_artCeramics and Compositesvisual_art.visual_art_mediumComposite materialTensile testingWeibull distributionComposites Part B: Engineering
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Functional adaptation of sarcolemma to physical stress

2010

sopeutuminenconduction velocityelectromyographyexercise induced damageeccentric exerciselihaksetmuscle fibressolukalvotfyysinen kuormittavuuscell membranes
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Comportement en fatigue des composites en lin/époxy

2011

International audience; Le travail présenté s'intéresse à la caractérisation des propriétés mécaniques quasi-statiques et en fatigue d'un composite stratifié en lin/époxy. Les éprouvettes fabriquées par thermocompression ont des séquences d'empilement de 0/90° et ±45° pour les essais de traction uniaxiale et cisaillement plan respectivement. Les essais quasi-statiques révèlent une variabilité des propriétés mécaniques de l'ordre de 10%. Les essais de fatigue en traction et en cisaillement plan ont été réalisés pour des niveaux de contraintes compris entre 40 et 80% des valeurs ultimes du composite (US). L'étude des boucles d'hystérésis a mis en évidence une plastification plus importante en…

stratifié[PHYS.MECA.MEMA] Physics [physics]/Mechanics [physics]/Mechanics of materials [physics.class-ph][ SPI.MECA.MEMA ] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph][ PHYS.MECA.MEMA ] Physics [physics]/Mechanics [physics]/Mechanics of materials [physics.class-ph]fatiguefibres naturelleslin[SPI.MECA.MEMA] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph]quasi-statique
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Swelling of cellulose fibres in composite materials: Constraint effects of the surrounding matrix

2013

Swelling of cellulose fibres in composite materials : Constraint effects of the surrounding matrix

ta214Materials scienceta114General EngineeringMatrix (biology)Constraint (information theory)A fibreschemistry.chemical_compoundchemistryCeramics and CompositesmedicineSwellingmedicine.symptomComposite materialCelluloseComposites Science and Technology
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Thermal and thermo-oxidative stability and kinetics of decomposition of PHBV/sisal composites

2017

The decomposition behaviours of composites made of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) and sisal were assessed in terms of thermal stability and decomposition kinetics, under inert and oxidative conditions, by means of multi-rate linear non-isothermal thermogravimetric experiments. A statistical design of experiments was applied to study the influence of the addition of sisal (0-10-20-30%wt), the presence coupling agent (Yes/No) and the applied conditions of work (inert or oxidative). An improvement of the thermal and thermo-oxidative stability of PHBV with the addition of sisal was observed for all cases. An accurate methodology based on iso-conversional methods was applied…

thermo-oxidative decompositionMaterials scienceGeneral Chemical EngineeringKinetics02 engineering and technology010402 general chemistry01 natural sciencesnatural fibresThermalwaste-to-fuelChemical Engineering (all)Thermal stabilityComposite materialthermal decompositionSISALcomputer.programming_languageInertBiocompositesMaterials compostosTermoplàsticsChemistry (all)Thermal decompositionpoly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV)General Chemistrysisal021001 nanoscience & nanotechnologyBiocomposites; kinetics; natural fibres; poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV); sisal; thermal decomposition; thermo-oxidative decomposition; waste-to-fuel; Chemistry (all); Chemical Engineering (all)Decomposition0104 chemical scienceskinetics0210 nano-technologycomputerChemical Engineering Communications
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