Statistical populationIn statistics, a population is a set of similar items or events which is of interest for some question or experiment. A statistical population can be a group of existing objects (e.g. the set of all stars within the Milky Way galaxy) or a hypothetical and potentially infinite group of objects conceived as a generalization from experience (e.g. the set of all possible hands in a game of poker). A common aim of statistical analysis is to produce information about some chosen population.
Exothermic weldingExothermic welding, also known as exothermic bonding, thermite welding (TW), and thermit welding, is a welding process that employs molten metal to permanently join the conductors. The process employs an exothermic reaction of a thermite composition to heat the metal, and requires no external source of heat or current. The chemical reaction that produces the heat is an aluminothermic reaction between aluminium powder and a metal oxide. In exothermic welding, aluminium dust reduces the oxide of another metal, most commonly iron oxide, because aluminium is highly reactive.
Arc weldingArc 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.
Residual stressIn materials science and solid mechanics, residual stresses are stresses that remain in a solid material after the original cause of the stresses has been removed. Residual stress may be desirable or undesirable. For example, laser peening imparts deep beneficial compressive residual stresses into metal components such as turbine engine fan blades, and it is used in toughened glass to allow for large, thin, crack- and scratch-resistant glass displays on smartphones.
Soudage à l'arc à l'électrode enrobéevignette| Soudage à l'arc à l'électrode enrobée. vignette| Schéma de fonctionnement : 1) Enrobage 2) Électrode 3) Gaz protecteur 4) Bain de fusion 5) Métal de base 6) Cordon de soudure 7) Laitier Le soudage à l'arc à l'électrode enrobée (SAEE ou MMA), soudage manuel ou soudage à la baguette, est l'un des procédés de soudage les plus utilisés. Lorsque l'on approche l'électrode enrobée des pièces à assembler, il se crée un arc électrique qui dégage un fort effet calorifique provoquant la fusion de l'électrode.
Soudage TIGvignette|Soudage à l'arc TIG Le soudage TIG est un procédé de soudage à l'arc avec une électrode non fusible, en présence d'un métal d'apport si besoin. TIG est un acronyme de Tungsten Inert Gas, où Tungsten (Tungstène) désigne l'électrode et Inert Gas (Gaz inerte) le type de gaz plasmagène utilisé. L'arc électrique se crée entre l'électrode et la pièce à souder qui est protégée par un gaz ou un mélange de gaz rares tels que l'argon et l'hélium. De fait, l’arc électrique remplace la flamme du chalumeau traditionnel.
Science des matériauxLa science des matériaux repose sur la relation entre les propriétés, la morphologie structurale et la mise en œuvre des matériaux qui constituent les objets qui nous entourent (métaux, polymères, semi-conducteurs, céramiques, composites, etc.). Elle se focalise sur l'étude des principales caractéristiques des matériaux, ainsi que leurs propriétés mécaniques, chimiques, électriques, thermiques, optiques et magnétiques. La science des matériaux est au cœur de beaucoup des grandes révolutions techniques.
Structural steelStructural 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.
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.
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.