I-beam is a generic lay term for a variety of structural members with an or -shaped cross-section. Technical terms for similar items include H-beam (for universal column, UC), w-beam (for "wide flange"), universal beam (UB), rolled steel joist (RSJ), or double-T (especially in Polish, Bulgarian, Spanish, Italian and German). I-beams are typically made of structural steel and serve a wide variety of construction uses. The horizontal elements of the are called flanges, and the vertical element is known as the "web".
Structural steel is a category of steel used for making construction materials in a variety of shapes. Many structural steel shapes take the form of an elongated beam having a of a specific cross section. Structural steel shapes, sizes, chemical composition, mechanical properties such as strengths, storage practices, etc., are regulated by standards in most industrialized countries. Most structural steel shapes, such as -beams, have high second moments of area, which means they are very stiff in respect to their cross-sectional area and thus can support a high load without excessive sagging.
A T-beam (or tee beam), used in construction, is a load-bearing structure of reinforced concrete, wood or metal, with a -shaped cross section. The top of the -shaped cross section serves as a flange or compression member in resisting compressive stresses. The web (vertical section) of the beam below the compression flange serves to resist shear stress. When used for highway bridges the beam incorporates reinforcing bars in the bottom of the beam to resist the tensile stresses which occur during bending.
lien=//upload.wikimedia.org/wikipedia/commons/thumb/2/2e/Lloyds_Axe_and_Willis.jpg/170px-Lloyds_Axe_and_Willis.jpg|vignette|200px|Ossature en acier rectangulaire, ou «charpente périmétrique» du bâtiment Willis (à droite) contrastain avec la charpente du 30 St Mary Axe, à Londres. L'ossature en acier est une technique de construction avec une ossature de colonnes verticales en acier et de horizontales, construites selon une grille rectangulaire pour supporter les planchers, le toit et les murs d'un bâtiment qui sont tous attachés à l'ossature.
Arc welding is a welding process that is used to join metal to metal by using electricity to create enough heat to melt metal, and the melted metals, when cool, result in a binding of the metals. It is a type of welding that uses a welding power supply to create an electric arc between a metal stick ("electrode") and the base material to melt the metals at the point of contact. Arc welding power supplies can deliver either direct (DC) or alternating (AC) current to the work, while consumable or non-consumable electrodes are used.
Seismic analysis is a subset of structural analysis and is the calculation of the response of a building (or nonbuilding) structure to earthquakes. It is part of the process of structural design, earthquake engineering or structural assessment and retrofit (see structural engineering) in regions where earthquakes are prevalent. As seen in the figure, a building has the potential to 'wave' back and forth during an earthquake (or even a severe wind storm). This is called the 'fundamental mode', and is the lowest frequency of building response.
En physique (mécanique), la flexion est la déformation d'un objet sous l'action d'une charge. Elle se traduit par une courbure. Dans le cas d'une poutre, elle tend à rapprocher ses deux extrémités. Dans le cas d'une plaque, elle tend à rapprocher deux points diamétralement opposés sous l'action. L'essai de flexion d'une poutre est un essai mécanique utilisé pour tester la résistance en flexion. On utilise la flexion dite « trois points » et la flexion dite « quatre points ».
L'acier inoxydable, couramment appelé acier inox ou inox, est un acier (alliage à base de fer et de carbone), comportant moins de 1,2 % de carbone et plus de 10,5 % de chrome, dont la propriété remarquable est d'être peu sensible à la corrosion et de ne pas se dégrader en rouille. La présence de chrome en solution au-delà de 10,5 % dans la matrice d'un acier provoque la formation d'une couche protectrice d'oxyde de chrome qui lui confère son inoxydabilité.
vignette|225x225px|Soudage à l'arc avec fil - électrode fusible sous flux gazeux. vignette|Un poste à souder MIG/MAG. Le soudage MIG-MAG (respectivement 131 ou 132/133, et 135 ou 136/138 suivant la norme NF EN ISO 4063-2011), ou encore GMAW (Gas Metal Arc Welding) selon le code américain ASME (American Society of Mechanical Engineers) section IX, est un procédé de soudage semi-automatique. La fusion des métaux est obtenue par l’énergie calorifique dégagée par un arc électrique qui éclate dans une atmosphère de protection entre un fil électrode fusible et les pièces à assembler.
Structural 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.