Matériau compositevignette|Multicouche, un exemple de matériau composite. Un matériau composite est un assemblage ou un mélange hétérogène d'au moins deux composants, non miscibles mais ayant une forte capacité d'interpénétration et d'adhésion, dont les propriétés mécaniques se complètent. Le nouveau matériau ainsi constitué possède des propriétés avantageuses que les composants seuls ne possèdent pas. Bien que le terme composite soit moderne, de tels matériaux ont été inventés et abondamment utilisés bien avant l'Antiquité, comme les torchis pour la construction de bâtiments.
Fibre de carbonevignette|Petits morceaux de fibres de carbone (longueur 8 mm). La fibre de carbone se compose de fibres extrêmement fines, d'environ cinq à dix micromètres de diamètre, et est composée principalement d'atomes de carbone. Ceux-ci sont agglomérés dans des cristaux microscopiques qui sont alignés plus ou moins parallèlement à l'axe long de la fibre. L'alignement des cristaux rend la fibre extrêmement résistante pour sa taille. Plusieurs milliers de fibres de carbone sont enroulées ensemble pour former un fil, qui peut être employé tel quel ou tissé.
Fibre optiqueUne fibre optique est un fil dont l’âme, très fine et faite de verre ou de plastique, a la propriété de conduire la lumière et sert pour la fibroscopie, l'éclairage ou la transmission de données numériques. Elle offre un débit d'information nettement supérieur à celui des câbles coaxiaux et peut servir de support à un réseau « large bande » par lequel transitent aussi bien la télévision, le téléphone, la visioconférence ou les données informatiques.
Potential applications of carbon nanotubesCarbon nanotubes (CNTs) are cylinders of one or more layers of graphene (lattice). Diameters of single-walled carbon nanotubes (SWNTs) and multi-walled carbon nanotubes (MWNTs) are typically 0.8 to 2 nm and 5 to 20 nm, respectively, although MWNT diameters can exceed 100 nm. CNT lengths range from less than 100 nm to 0.5 m. Individual CNT walls can be metallic or semiconducting depending on the orientation of the lattice with respect to the tube axis, which is called chirality.
Polymère renforcé de fibres de carboneLe polymère renforcé de fibres de carbone, ou PRFC (en anglais Carbon Fiber Reinforced Polymer ou CFRP), est un matériau composite très résistant et léger. Son prix reste à l' assez élevé. De la même manière que le plastique à renfort fibre de verre est appelé plus simplement « fibre de verre », le CFRP prend la dénomination usuelle de « fibre de carbone ». La matrice généralement utilisée dans la fabrication du composite est une résine époxyde ; on peut aussi employer le polyester, le vinylester ou le polyamide.
Essai de compressionUn essai de compression mesure la résistance à la compression d'un matériau sur une machine d'essais mécaniques suivant un protocole normalisé. Les essais de compression se font souvent sur le même appareil que l'essai de traction mais en appliquant la charge en compression au lieu de l'appliquer en traction. Pendant l'essai de compression, l'échantillon se raccourcit et s'élargit. La déformation relative est « négative » en ce sens que la longueur de l'échantillon diminue.
Ultimate tensile strengthUltimate tensile strength (also called UTS, tensile strength, TS, ultimate strength or in notation) is the maximum stress that a material can withstand while being stretched or pulled before breaking. In brittle materials the ultimate tensile strength is close to the yield point, whereas in ductile materials the ultimate tensile strength can be higher. The ultimate tensile strength is usually found by performing a tensile test and recording the engineering stress versus strain.
Fiber-optic cableA fiber-optic cable, also known as an optical-fiber cable, is an assembly similar to an electrical cable but containing one or more optical fibers that are used to carry light. The optical fiber elements are typically individually coated with plastic layers and contained in a protective tube suitable for the environment where the cable is used. Different types of cable are used for optical communication in different applications, for example long-distance telecommunication or providing a high-speed data connection between different parts of a building.
FiberFiber or fibre (British English; from fibra) is a natural or artificial substance that is significantly longer than it is wide. Fibers are often used in the manufacture of other materials. The strongest engineering materials often incorporate fibers, for example carbon fiber and ultra-high-molecular-weight polyethylene. Synthetic fibers can often be produced very cheaply and in large amounts compared to natural fibers, but for clothing natural fibers can give some benefits, such as comfort, over their synthetic counterparts.
Single-mode optical fiberIn fiber-optic communication, a single-mode optical fiber (SMF), also known as fundamental- or mono-mode, is an optical fiber designed to carry only a single mode of light - the transverse mode. Modes are the possible solutions of the Helmholtz equation for waves, which is obtained by combining Maxwell's equations and the boundary conditions. These modes define the way the wave travels through space, i.e. how the wave is distributed in space. Waves can have the same mode but have different frequencies.
Fiber artFiber art (fibre art in British spelling) refers to fine art whose material consists of natural or synthetic fiber and other components, such as fabric or yarn. It focuses on the materials and on the manual labor on the part of the artist as part of the works' significance, and prioritizes aesthetic value over utility. The term fiber art came into use by curators and arts historians to describe the work of the artist-craftsman following World War II. Those years saw a sharp increase in the design and production of "art fabric.
Multi-mode optical fiberMulti-mode optical fiber is a type of optical fiber mostly used for communication over short distances, such as within a building or on a campus. Multi-mode links can be used for data rates up to 100 Gbit/s. Multi-mode fiber has a fairly large core diameter that enables multiple light modes to be propagated and limits the maximum length of a transmission link because of modal dispersion. The standard G.651.1 defines the most widely used forms of multi-mode optical fiber.
Quality (business)In business, engineering, and manufacturing, quality – or high quality – has a pragmatic interpretation as the non-inferiority or superiority of something (goods or services); it is also defined as being suitable for the intended purpose (fitness for purpose) while satisfying customer expectations. Quality is a perceptual, conditional, and somewhat subjective attribute and may be understood differently by different people. Consumers may focus on the specification quality of a product/service, or how it compares to competitors in the marketplace.
Specific strengthThe specific strength is a material's (or muscle's) strength (force per unit area at failure) divided by its density. It is also known as the strength-to-weight ratio or strength/weight ratio or strength-to-mass ratio. In fiber or textile applications, tenacity is the usual measure of specific strength. The SI unit for specific strength is Pa⋅m3/kg, or N⋅m/kg, which is dimensionally equivalent to m2/s2, though the latter form is rarely used.
Assurance qualitéOn désigne par assurance qualité un moyen d'obtenir confiance dans l'assurance de la qualité c'est-à-dire dans l'aptitude de la société ou de l'organisation à satisfaire le niveau de qualité désiré. Le terme « assurance qualité » qui élide les articles naturellement présents dans la langue française est très commun du fait que le concept a été importé (anglicisme) de la langue anglaise où l'on parle de Quality assurance. Le terme assurance a donc ici la valeur de confiance que lui donne la langue anglaise.
Fiber-optic communicationFiber-optic communication is a method of transmitting information from one place to another by sending pulses of infrared or visible light through an optical fiber. The light is a form of carrier wave that is modulated to carry information. Fiber is preferred over electrical cabling when high bandwidth, long distance, or immunity to electromagnetic interference is required. This type of communication can transmit voice, video, and telemetry through local area networks or across long distances.
Management de la qualitévignette|La roue de Deming illustre le processus d'amélioration continue, l'un des principes fondamentaux du management de la qualité. Le management de la qualité, ou gestion de la qualité, est une discipline du management regroupant l'ensemble des concepts et méthodes visant à satisfaire les clients d'un organisme (en général les entreprises, associations, organismes publics) et à fournir des produits et services correspondant à leurs attentes.
Engineered woodEngineered wood, also called mass timber, composite wood, man-made wood, or manufactured board, includes a range of derivative wood products which are manufactured by binding or fixing the strands, particles, fibres, or veneers or boards of wood, together with adhesives, or other methods of fixation to form composite material. The panels vary in size but can range upwards of and in the case of cross-laminated timber (CLT) can be of any thickness from a few inches to or more.
Fiber laserA fiber laser (or fibre laser in Commonwealth English) is a laser in which the active gain medium is an optical fiber doped with rare-earth elements such as erbium, ytterbium, neodymium, dysprosium, praseodymium, thulium and holmium. They are related to doped fiber amplifiers, which provide light amplification without lasing. Fiber nonlinearities, such as stimulated Raman scattering or four-wave mixing can also provide gain and thus serve as gain media for a fiber laser.
Textilevignette|La Fileuse, William Bouguereau, . vignette|Détail d'un objet tissé. Un textile est un matériau susceptible d'être tissé ou tricoté. Initialement, il désigne donc un matériau qui peut se diviser en fibres ou en fils textiles, tels le coton, le chanvre, le lin, la laine (textiles organiques) ou la pierre d'amiante (textile minéral), puis avec la découverte de nouvelles techniques, les fibres synthétiques. L'action de séparer les fibres d'un textile s'appelle le filage.