Stress–strain curveIn engineering and materials science, a stress–strain curve for a material gives the relationship between stress and strain. It is obtained by gradually applying load to a test coupon and measuring the deformation, from which the stress and strain can be determined (see tensile testing). These curves reveal many of the properties of a material, such as the Young's modulus, the yield strength and the ultimate tensile strength. Generally speaking, curves representing the relationship between stress and strain in any form of deformation can be regarded as stress–strain curves.
Contrainte de cisaillementvignette|Une force est appliquée à la partie supérieure d'un carré, dont la base est bloquée. La déformation en résultant transforme le carré en parallélogramme. Une contrainte de cisaillement τ (lettre grecque « tau ») est une contrainte mécanique appliquée parallèlement à la section transversale d'un élément allongé, par opposition aux contraintes normales qui sont appliquées perpendiculairement à cette surface (donc longitudinalement, c.-à-d. selon l'axe principal de la pièce). C'est le rapport d'une force à une surface.
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.
Centrale solaire thermodynamiqueUne centrale solaire thermodynamique (ou centrale solaire thermique à concentration ou encore héliothermodynamique), en anglais CSP (pour concentrated solar power) est un site industriel qui concentre les rayons du Soleil à l'aide de miroirs afin de chauffer un fluide caloporteur, lequel sert en général à produire de l'électricité. Ce type de centrale permet, en stockant ce fluide dans un réservoir, de prolonger le fonctionnement de la centrale plusieurs heures au-delà du coucher du Soleil.
Pont en treillisvignette|Pont Bailey sur la Meurthe, France. Pont provisoire en treillis, à mise en place très rapide. Un pont en treillis, pont en poutre en treillis ou pont-treillis est un pont dont les poutres latérales sont composées de barres métalliques triangulées, assemblées en treillis. Au début du , les poutres en treillis étaient dénommées poutres américaines, car c’est aux États-Unis que la technique est apparue. Les treillis peuvent être assemblés par boulonnage, par rivetage ou bien soudés.
Shear strength (soil)Shear strength is a term used in soil mechanics to describe the magnitude of the shear stress that a soil can sustain. The shear resistance of soil is a result of friction and interlocking of particles, and possibly cementation or bonding of particle contacts. Due to interlocking, particulate material may expand or contract in volume as it is subject to shear strains. If soil expands its volume, the density of particles will decrease and the strength will decrease; in this case, the peak strength would be followed by a reduction of shear stress.
Yield (engineering)In materials science and engineering, the yield point is the point on a stress-strain curve that indicates the limit of elastic behavior and the beginning of plastic behavior. Below the yield point, a material will deform elastically and will return to its original shape when the applied stress is removed. Once the yield point is passed, some fraction of the deformation will be permanent and non-reversible and is known as plastic deformation.
Direct shear testA direct shear test is a laboratory or field test used by geotechnical engineers to measure the shear strength properties of soil or rock material, or of discontinuities in soil or rock masses. The U.S. and U.K. standards defining how the test should be performed are ASTM D 3080, AASHTO T236 and BS 1377-7:1990, respectively. For rock the test is generally restricted to rock with (very) low shear strength. The test is, however, standard practice to establish the shear strength properties of discontinuities in rock.
Structural dynamicsStructural dynamics is a type of structural analysis which covers the behavior of a structure subjected to dynamic (actions having high acceleration) loading. Dynamic loads include people, wind, waves, traffic, earthquakes, and blasts. Any structure can be subjected to dynamic loading. Dynamic analysis can be used to find dynamic displacements, time history, and modal analysis. Structural analysis is mainly concerned with finding out the behavior of a physical structure when subjected to force.
Prestressed concretePrestressed concrete is a form of concrete used in construction. It is substantially "prestressed" (compressed) during production, in a manner that strengthens it against tensile forces which will exist when in service. This compression is produced by the tensioning of high-strength "tendons" located within or adjacent to the concrete and is done to improve the performance of the concrete in service. Tendons may consist of single wires, multi-wire strands or threaded bars that are most commonly made from high-tensile steels, carbon fiber or aramid fiber.