Ingénierie des structuresL'ingénierie des structures est un domaine de l'ingénierie et plus particulièrement du génie civil, traitant de la stabilité des constructions (conception et de l'analyse des structures). Une structure est soumise à différentes actions, permanentes ou variables dans le temps, statiques ou dynamiques, de nature mécanique ou thermique, et sa conception vise à satisfaire certains critères vis-à-vis de ces actions : Sécurité : sa résistance, son équilibre et sa stabilité doivent être assurés avec une probabilité choisie ; Performance : son fonctionnement et le confort associés doivent être garantis pour une durée suffisante ; Durabilité : la dégradation de la structure dans le temps doit être limitée et maîtrisée pour satisfaire les deux premiers critères.
Structural engineerStructural engineers analyze, design, plan, and research structural components and structural systems to achieve design goals and ensure the safety and comfort of users or occupants. Their work takes account mainly of safety, technical, economic, and environmental concerns, but they may also consider aesthetic and social factors. Structural engineering is usually considered a specialty discipline within civil engineering, but it can also be studied in its own right.
Pontvignette|Pont permettant le passage de la ligne C du métro de Rotterdam, à Capelle-sur-l'Yssel (Pays-Bas). vignette|Pont sur la rivière Moyka à Saint-Pétersbourg, Russie Un pont est un ouvrage d'art qui permet de franchir un obstacle naturel ou artificiel (dépression, cours d'eau, voie de communication, vallée, ravin, canyon) en passant par-dessus. Le franchissement supporte le passage d'humains et de véhicules dans le cas d'un pont routier, ou d'eau dans le cas d'un aqueduc.
Tablier (pont)A deck is the surface of a bridge. A structural element of its superstructure, it may be constructed of concrete, steel, open grating, or wood. Sometimes the deck is covered by a railroad bed and track, asphalt concrete, or other form of pavement for ease of vehicle crossing. A concrete deck may be an integral part of the bridge structure (T-beam or double tee structure) or it may be supported with I-beams or steel girders. When a bridge deck is installed in a through truss, it is sometimes called a floor system.
Pont en arcvignette|Pont en maçonnerie sur l'Antietam, un affluent du fleuve Potomac. vignette|Ponts en arc dans le centre-ville d'Amsterdam. vignette|Le pont Maximilien-Joseph à Munich. vignette|Le pont Gebsattel à Munich. vignette|Les Satsop River Bridges dans l'État de Washington. Un pont en arc est un pont, à savoir une construction qui permet de franchir une dépression ou un obstacle (cours d'eau, voie de communication, vallée, ravin, canyon), dont la ligne de la partie inférieure (intrados), est en forme d'arc.
Pont suspenduUn pont suspendu à câbles porteurs est un ouvrage métallique dont le tablier est attaché par l'intermédiaire de tiges de suspension verticales à un certain nombre de câbles flexibles ou de chaînes dont les extrémités sont reliées aux culées sur les berges. Contrairement à tous les autres ponts, les ponts suspendus exercent une traction horizontale sur leur point d'appui.
Through arch bridgeA through arch bridge, also known as a through-type arch bridge, is a bridge that is made from materials such as steel or reinforced concrete, in which the base of an arch structure is below the deck but the top rises above it. It can either be lower bearing or mid-bearing. Thus, the deck is within the arch, and cables or beams that are in tension suspend the central part of the deck from the arch. For a specific construction method, especially for masonry arches, the proportions of the arch remain similar no matter what the size: wider arches are thus required to be taller arches.
Structural integrity and failureStructural integrity and failure is an aspect of engineering that deals with the ability of a structure to support a designed structural load (weight, force, etc.) without breaking and includes the study of past structural failures in order to prevent failures in future designs. Structural integrity is the ability of an item—either a structural component or a structure consisting of many components—to hold together under a load, including its own weight, without breaking or deforming excessively.
Structural mechanicsStructural mechanics or mechanics of structures is the computation of deformations, deflections, and internal forces or stresses (stress equivalents) within structures, either for design or for performance evaluation of existing structures. It is one subset of structural analysis. Structural mechanics analysis needs input data such as structural loads, the structure's geometric representation and support conditions, and the materials' properties. Output quantities may include support reactions, stresses and displacements.
Solid solution strengtheningIn metallurgy, solid solution strengthening is a type of alloying that can be used to improve the strength of a pure metal. The technique works by adding atoms of one element (the alloying element) to the crystalline lattice of another element (the base metal), forming a solid solution. The local nonuniformity in the lattice due to the alloying element makes plastic deformation more difficult by impeding dislocation motion through stress fields. In contrast, alloying beyond the solubility limit can form a second phase, leading to strengthening via other mechanisms (e.