Conformal coatingConformal coating is a protective, breathable coating of thin polymeric film applied to printed circuit boards (PCB), so named because it conforms to the contours of the PCB. Conformal coatings are typically applied at 25–250 μm to the electronic circuitry and provide protection against moisture, dust, chemicals, and temperature extremities. More recently, conformal coatings are being used to reduce the formation of whiskers, and can also prevent current bleed between closely positioned components.
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.
Plane stressIn continuum mechanics, a material is said to be under plane stress if the stress vector is zero across a particular plane. When that situation occurs over an entire element of a structure, as is often the case for thin plates, the stress analysis is considerably simplified, as the stress state can be represented by a tensor of dimension 2 (representable as a 2×2 matrix rather than 3×3). A related notion, plane strain, is often applicable to very thick members.
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.
Durcissement structuralLe durcissement structural est comme son nom l'indique un procédé permettant de durcir un alliage de métaux. Il nécessite un alliage métastable, dont la forme stable à température ambiante est un composé intermétallique constitué de deux phases différentes. Un recuit à l'intérieur du nez du diagramme TTT entraîne la germination de précipités de différentes nouvelles phases plus ou moins stables. Ces précipités, qu'ils soient cohérents ou incohérents avec la phase principale constituent des obstacles sur le chemin des dislocations ce qui augmente la dureté ainsi que les propriétés en traction du matériau.
Concentration de contraintethumb|La fissure dans le béton a été amorcée par un « effet de pointe » (concentration de contrainte). La concentration de contrainte est un phénomène survenant lorsque la section d'une pièce varie de manière brutale : trou (perçage), rainure, épaulement, gorge, fond de fissure, etc. Une pièce présente des points de fragilité dus à la forme. On constate que l'apparition des fissures, et la rupture, a en général lieu dans des zones présentant des angles vifs rentrants ou bien des perçages.
Cylinder stressIn mechanics, a cylinder stress is a stress distribution with rotational symmetry; that is, which remains unchanged if the stressed object is rotated about some fixed axis. Cylinder stress patterns include: circumferential stress, or hoop stress, a normal stress in the tangential (azimuth) direction. axial stress, a normal stress parallel to the axis of cylindrical symmetry. radial stress, a normal stress in directions coplanar with but perpendicular to the symmetry axis.
Ozone crackingCracks can be formed in many different elastomers by ozone attack, and the characteristic form of attack of vulnerable rubbers is known as ozone cracking. The problem was formerly very common, especially in tires, but is now rarely seen in those products owing to preventive measures. However, it does occur in many other safety-critical items such as fuel lines and rubber seals, such as gaskets and O-rings, where ozone attack is considered unlikely. Only a trace amount of the gas is needed to initiate cracking, and so these items can also succumb to the problem.
Thin-film opticsThin-film optics is the branch of optics that deals with very thin structured layers of different materials. In order to exhibit thin-film optics, the thickness of the layers of material must be similar to the coherence length; for visible light it is most often observed between 200 and 1000 nm of thickness. Layers at this scale can have remarkable reflective properties due to light wave interference and the difference in refractive index between the layers, the air, and the substrate.
Polyéthylène haute densitévignette|110px|Code d'identification de la résine PE-HD. Le polyéthylène haute densité (PE-HD) est un polyéthylène qui a été synthétisé en 1953 par le chimiste et prix Nobel allemand Karl Ziegler. Les PE-HD peuvent être produits par polymérisation coordinative de type catalyse de Ziegler-Natta ou catalyse avec un métallocène. Polyoléfine semi-cristalline Température maximale d'emploi : ; température de fragilisation : Compatible avec les micro-ondes Bonne flexibilité Très bonne résistance aux acides, alcools aliphatiques, aldéhydes, hydrocarbures aliphatiques et aromatiques Faible résistance aux agents oxydants, qui peuvent alors faciliter l'installation d'un biofilm indésirable.