Restauration (métallurgie)En métallurgie, la restauration est le nom d'un traitement thermique (ou d'une phase d'un traitement thermique) ou recuit durant lequel on observe une diminution de la densité des dislocations. Les dislocations sont en général introduites par déformation plastique (multiplication des dislocations par le mécanisme de Frank et Read). Ces dislocations se gênent mutuellement et donc augmentent la dureté (phénomène d'écrouissage).
Atome interstitielIn materials science, an interstitial defect is a type of point crystallographic defect where an atom of the same or of a different type, occupies an interstitial site in the crystal structure. When the atom is of the same type as those already present they are known as a self-interstitial defect. Alternatively, small atoms in some crystals may occupy interstitial sites, such as hydrogen in palladium.
DopantA dopant (also called a doping agent) is a trace of impurity element that is introduced into a chemical material to alter its original electrical or optical properties. The amount of dopant necessary to cause changes is typically very low. When doped into crystalline substances, the dopant's atoms get incorporated into its crystal lattice. The crystalline materials are frequently either crystals of a semiconductor such as silicon and germanium for use in solid-state electronics, or transparent crystals for use in the production of various laser types; however, in some cases of the latter, noncrystalline substances such as glass can also be doped with impurities.
Grain growthIn materials science, grain growth is the increase in size of grains (crystallites) in a material at high temperature. This occurs when recovery and recrystallisation are complete and further reduction in the internal energy can only be achieved by reducing the total area of grain boundary. The term is commonly used in metallurgy but is also used in reference to ceramics and minerals. The behaviors of grain growth is analogous to the coarsening behaviors of grains, which implied that both of grain growth and coarsening may be dominated by the same physical mechanism.
CupronickelLe cupronickel ou cupro-nickel est un alliage à base de cuivre, majoritaire, et de nickel, entre 10 % et 30 % en masse, et en plus faible proportions de fer et d'éléments dits « renforçateurs de résistance mécanique », comme le manganèse ou le silicium. On y trouve parfois aussi du zinc, de l'étain ou de l'aluminium. La gamme des cupronickels, incontournable par sa plus grande résistance à la corrosion que la plupart des autres alliages de cuivre ou encore sa résistance à l'usure, à l'eau de mer ou aux milieux salins, représente un important débouché technique.