Finite strain theoryIn continuum mechanics, the finite strain theory—also called large strain theory, or large deformation theory—deals with deformations in which strains and/or rotations are large enough to invalidate assumptions inherent in infinitesimal strain theory. In this case, the undeformed and deformed configurations of the continuum are significantly different, requiring a clear distinction between them. This is commonly the case with elastomers, plastically-deforming materials and other fluids and biological soft tissue.
Infinitesimal strain theoryIn continuum mechanics, the infinitesimal strain theory is a mathematical approach to the description of the deformation of a solid body in which the displacements of the material particles are assumed to be much smaller (indeed, infinitesimally smaller) than any relevant dimension of the body; so that its geometry and the constitutive properties of the material (such as density and stiffness) at each point of space can be assumed to be unchanged by the deformation.
Compression de donnéesLa compression de données ou codage de source est l'opération informatique consistant à transformer une suite de bits A en une suite de bits B plus courte pouvant restituer les mêmes informations, ou des informations voisines, en utilisant un algorithme de décompression. C'est une opération de codage qui raccourcit la taille (de transmission, de stockage) des données au prix d'un travail de compression. Celle-ci est l'opération inverse de la décompression.
Algorithme de compression sans pertevignette|Comparaison de la compression d'image entre les formats JPG (à gauche) et PNG (à droite). PNG utilise une compression sans perte. On appelle algorithme de compression sans perte toute procédure de codage ayant pour objectif de représenter une certaine quantité d'information en utilisant ou en occupant un espace plus petit, permettant ainsi une reconstruction exacte des données d'origine. C'est-à-dire que la compression sans perte englobe les techniques permettant de générer un duplicata exact du flux de données d'entrée après un cycle de compression/expansion.
Déformation d'un matériauLa déformation des matériaux est une science qui caractérise la manière dont réagit un matériau donné quand il est soumis à des sollicitations mécaniques. Cette notion est primordiale dans la conception (aptitude de la pièce à réaliser sa fonction), la fabrication (mise en forme de la pièce), et le dimensionnement mécanique (calcul de la marge de sécurité d'un dispositif pour éviter une rupture). La capacité d'une pièce à se déformer et à résister aux efforts dépend de trois paramètres : la forme de la pièce ; la nature du matériau ; des processus de fabrication : traitement thermique , traitement de surface, etc.
Strain-rate tensorIn continuum mechanics, the strain-rate tensor or rate-of-strain tensor is a physical quantity that describes the rate of change of the deformation of a material in the neighborhood of a certain point, at a certain moment of time. It can be defined as the derivative of the strain tensor with respect to time, or as the symmetric component of the Jacobian matrix (derivative with respect to position) of the flow velocity. In fluid mechanics it also can be described as the velocity gradient, a measure of how the velocity of a fluid changes between different points within the fluid.
Lossy compressionIn information technology, lossy compression or irreversible compression is the class of data compression methods that uses inexact approximations and partial data discarding to represent the content. These techniques are used to reduce data size for storing, handling, and transmitting content. The different versions of the photo of the cat on this page show how higher degrees of approximation create coarser images as more details are removed. This is opposed to lossless data compression (reversible data compression) which does not degrade the data.
Deformation (engineering)In engineering, deformation refers to the change in size or shape of an object. Displacements are the absolute change in position of a point on the object. Deflection is the relative change in external displacements on an object. Strain is the relative internal change in shape of an infinitesimally small cube of material and can be expressed as a non-dimensional change in length or angle of distortion of the cube. Strains are related to the forces acting on the cube, which are known as stress, by a stress-strain curve.
Compression d'imageLa compression d'image est une application de la compression de données sur des . Cette compression a pour utilité de réduire la redondance des données d'une image afin de pouvoir l'emmagasiner sans occuper beaucoup d'espace ou la transmettre rapidement. La compression d'image peut être effectuée avec perte de données ou sans perte. La compression sans perte est souvent préférée là où la netteté des traits est primordiale : schémas, dessins techniques, icônes, bandes dessinées.
TenseurEn mathématiques, plus précisément en algèbre multilinéaire et en géométrie différentielle, un tenseur est un objet très général, dont la valeur s'exprime dans un espace vectoriel. On peut l'utiliser entre autres pour représenter des applications multilinéaires ou des multivecteurs.
Flambagethumb|Flexion sous un effort de compression. Le flambage ou flambement est un phénomène d'instabilité d'une structure élastique qui pour échapper à une charge importante exploite un mode de déformation non sollicité, opposant moins de raideur à la charge. La notion de flambement s'applique généralement à des poutres élancées qui lorsqu'elles sont soumises à un effort normal de compression, ont tendance à fléchir et se déformer dans une direction perpendiculaire à l'axe de compression (passage d'un état de compression à un état de flexion) ; mais elle peut aussi s'appliquer par exemple à des lames de ressort sollicitées en flexion qui se déversent en torsion pour échapper à la charge.
Compression artifactA compression artifact (or artefact) is a noticeable distortion of media (including , audio, and video) caused by the application of lossy compression. Lossy data compression involves discarding some of the media's data so that it becomes small enough to be stored within the desired or transmitted (streamed) within the available bandwidth (known as the data rate or bit rate). If the compressor cannot store enough data in the compressed version, the result is a loss of quality, or introduction of artifacts.
Elasticity tensorThe elasticity tensor is a fourth-rank tensor describing the stress-strain relation in a linear elastic material. Other names are elastic modulus tensor and stiffness tensor. Common symbols include and . The defining equation can be written as where and are the components of the Cauchy stress tensor and infinitesimal strain tensor, and are the components of the elasticity tensor. Summation over repeated indices is implied. This relationship can be interpreted as a generalization of Hooke's law to a 3D continuum.
Strain (chemistry)In chemistry, a molecule experiences strain when its chemical structure undergoes some stress which raises its internal energy in comparison to a strain-free reference compound. The internal energy of a molecule consists of all the energy stored within it. A strained molecule has an additional amount of internal energy which an unstrained molecule does not. This extra internal energy, or strain energy, can be likened to a compressed spring.
Flexion (matériau)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 ».
Tension de cycleEn chimie organique, la tension de cycle ou contrainte cyclique désigne la déstabilisation d'une molécule cyclique, telle un cycloalcane, causée par l'orientation spatiale des atomes qui la composent. Cette tension provient d'une combinaison (1) de contrainte d'angle, (2) de contrainte de torsion (ou tension de Pitzer) et (3) de la tension trans-annulaire (ou contrainte de van der Waals).
Strain energy density functionA strain energy density function or stored energy density function is a scalar-valued function that relates the strain energy density of a material to the deformation gradient. Equivalently, where is the (two-point) deformation gradient tensor, is the right Cauchy–Green deformation tensor, is the left Cauchy–Green deformation tensor, and is the rotation tensor from the polar decomposition of . For an anisotropic material, the strain energy density function depends implicitly on reference vectors or tensors (such as the initial orientation of fibers in a composite) that characterize internal material texture.
Stress–strain curveIn engineering and materials science, a stress–strain curve for a material gives the relationship between stress and strain. It is obtained by gradually applying load to a test coupon and measuring the deformation, from which the stress and strain can be determined (see tensile testing). These curves reveal many of the properties of a material, such as the Young's modulus, the yield strength and the ultimate tensile strength. Generally speaking, curves representing the relationship between stress and strain in any form of deformation can be regarded as stress–strain curves.
Prelog strainIn organic chemistry, transannular strain (also called Prelog strain after chemist Vladimir Prelog) is the unfavorable interactions of ring substituents on non-adjacent carbons. These interactions, called transannular interactions, arise from a lack of space in the interior of the ring, which forces substituents into conflict with one another. In medium-sized cycloalkanes, which have between 8 and 11 carbons constituting the ring, transannular strain can be a major source of the overall strain, especially in some conformations, to which there is also contribution from large-angle strain and Pitzer strain.
Occupational stressOccupational stress is psychological stress related to one's job. Occupational stress refers to a chronic condition. Occupational stress can be managed by understanding what the stressful conditions at work are and taking steps to remediate those conditions. Occupational stress can occur when workers do not feel supported by supervisors or coworkers, feel as if they have little control over the work they perform, or find that their efforts on the job are incommensurate with the job's rewards.