Human physiology of underwater divingHuman physiology of underwater diving is the physiological influences of the underwater environment on the human diver, and adaptations to operating underwater, both during breath-hold dives and while breathing at ambient pressure from a suitable breathing gas supply. It, therefore, includes the range of physiological effects generally limited to human ambient pressure divers either freediving or using underwater breathing apparatus.
Lyot filterA Lyot filter, named for its inventor Bernard Lyot, is a type of optical filter that uses birefringence to produce a narrow passband of transmitted wavelengths. Lyot filters are often used in astronomy, particularly for solar astronomy. A Lyot filter is made from one or more birefringent plates (usually quartz), with (in multi-plate filters) each plate being half the thickness of the previous one. Because the plates are birefringent, the ordinary and extraordinary polarization components of a light beam experience a different refractive index and thus have a different phase velocity.
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.
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.
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.
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.
Déformation plastiqueLa théorie de la plasticité traite des déformations irréversibles indépendantes du temps, elle est basée sur des mécanismes physiques intervenant dans les métaux et alliages mettant en jeu des mouvements de dislocations (un réarrangement de la position relative des atomes, ou plus généralement des éléments constitutifs du matériau) dans un réseau cristallin sans influence de phénomènes visqueux ni présence de décohésion endommageant la matière. Une des caractéristiques de la plasticité est qu’elle n’apparaît qu’une fois un seuil de charge atteint.
Blood pressureBlood pressure (BP) is the pressure of circulating blood against the walls of blood vessels. Most of this pressure results from the heart pumping blood through the circulatory system. When used without qualification, the term "blood pressure" refers to the pressure in a brachial artery, where it is most commonly measured. Blood pressure is usually expressed in terms of the systolic pressure (maximum pressure during one heartbeat) over diastolic pressure (minimum pressure between two heartbeats) in the cardiac cycle.
Deformation (engineering)In engineering, deformation refers to the change in size or shape of an object. Displacements are the absolute change in position of a point on the object. Deflection is the relative change in external displacements on an object. Strain is the relative internal change in shape of an infinitesimally small cube of material and can be expressed as a non-dimensional change in length or angle of distortion of the cube. Strains are related to the forces acting on the cube, which are known as stress, by a stress-strain curve.
Fibre naturellethumb|Cordelette en chanvre. Les fibres naturelles sont d'origine animale ou végétale. Les plus utilisées sont les fibres de coton, lin et chanvre, ou encore de sisal, jute, kénaf ou coco. Les fibres de chanvre étaient particulièrement prisées pour les cordages et voilures des bateaux de la marine marchande et de guerre du fait de leur grande souplesse et résistance en environnement agressif. Les fibres et filasses de chanvre sont aujourd'hui utilisées par exemple pour l'étanchéité dans le chauffage sanitaire.
Stress–strain analysisStress–strain analysis (or stress analysis) is an engineering discipline that uses many methods to determine the stresses and strains in materials and structures subjected to forces. In continuum mechanics, stress is a physical quantity that expresses the internal forces that neighboring particles of a continuous material exert on each other, while strain is the measure of the deformation of the material. In simple terms we can define stress as the force of resistance per unit area, offered by a body against deformation.
RecuitLe recuit d'une pièce métallique ou d'un matériau est un procédé correspondant à un cycle de chauffage. Celui-ci consiste en une étape de montée graduelle en température suivie d'un refroidissement contrôlé. Cette procédure, courante en sciences des matériaux, permet de modifier les caractéristiques physiques du métal ou du matériau étudié. Cette action est particulièrement employée pour faciliter la relaxation des contraintes pouvant s'accumuler au cœur de la matière, sous l'effet de contraintes mécaniques ou thermiques, intervenant dans les étapes de synthèse et de mise en forme des matériaux.