HemorheologyHemorheology, also spelled haemorheology (from Greek ‘αἷμα, haima 'blood' and rheology, from Greek ῥέω rhéō, 'flow' and -λoγία, -logia 'study of'), or blood rheology, is the study of flow properties of blood and its elements of plasma and cells. Proper tissue perfusion can occur only when blood's rheological properties are within certain levels. Alterations of these properties play significant roles in disease processes. Blood viscosity is determined by plasma viscosity, hematocrit (volume fraction of red blood cell, which constitute 99.
Highway engineeringHighway engineering (also known as roadway engineering and street engineering) is a professional engineering discipline branching from the civil engineering subdiscipline of transportation engineering that involves the planning, design, construction, operation, and maintenance of roads, highways, streets, bridges, and tunnels to ensure safe and effective transportation of people and goods. Highway engineering became prominent towards the latter half of the 20th century after World War II.
Vitesse de déformationEn mécanique des milieux continus, on considère la déformation d'un élément de matière au sein d'une pièce. On s'attache donc à décrire ce qui se passe localement et non pas d'un point de vue global, et à utiliser des paramètres indépendants de la forme de la pièce. La vitesse de déformation que l'on considère est donc la dérivée par rapport au temps de la déformation ε ; on la note donc (« epsilon point ») : Elle s'exprime en s−1, parfois en %/s. C'est un des paramètres capitaux en rhéologie.
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.
Structural loadA structural load or structural action is a force, deformation, or acceleration applied to structural elements. A load causes stress, deformation, and displacement in a structure. Structural analysis, a discipline in engineering, analyzes the effects of loads on structures and structural elements. Excess load may cause structural failure, so this should be considered and controlled during the design of a structure. Particular mechanical structures—such as aircraft, satellites, rockets, space stations, ships, and submarines—are subject to their own particular structural loads and actions.
Rubber elasticityRubber elasticity refers to a property of crosslinked rubber: it can be stretched by up to a factor of 10 from its original length and, when released, returns very nearly to its original length. This can be repeated many times with no apparent degradation to the rubber. Rubber is a member of a larger class of materials called elastomers and it is difficult to overestimate their economic and technological importance. Elastomers have played a key role in the development of new technologies in the 20th century and make a substantial contribution to the global economy.
Contrainte de cisaillementvignette|Une force est appliquée à la partie supérieure d'un carré, dont la base est bloquée. La déformation en résultant transforme le carré en parallélogramme. Une contrainte de cisaillement τ (lettre grecque « tau ») est une contrainte mécanique appliquée parallèlement à la section transversale d'un élément allongé, par opposition aux contraintes normales qui sont appliquées perpendiculairement à cette surface (donc longitudinalement, c.-à-d. selon l'axe principal de la pièce). C'est le rapport d'une force à une surface.
Matériau de constructionLes matériaux de construction sont des matériaux utilisés dans les secteurs de la construction : bâtiments et travaux publics (souvent désignés par le sigle BTP). Ils couvrent une vaste gamme des matériaux qui inclut principalement le bois, le verre, l'acier, l'aluminium, les textiles, les matières plastiques (isolants notamment) et les matériaux issus de la transformation de produits de carrières, qui peuvent être plus ou moins élaborés (incluant le béton et divers dérivés de l'argile tels que briques, tuiles, carrelages et divers éléments sanitaires).
Réaction aiguë au stressUne réaction aiguë au stress, également nommée réaction aiguë à un facteur de stress (dans la CIM-10), choc psychologique ou choc, est un phénomène psychique causé par un violent événement traumatisant ou terrifiant. Elle se manifeste par des symptomes physiques et psychiques, notamment l'incapacité de penser et réagir à la situation. S'il n'est pas ensuite correctement ressenti, pensé et intégré (« digéré »), le choc psychique se transforme en trouble de stress post-traumatique.
Social stressSocial stress is stress that stems from one's relationships with others and from the social environment in general. Based on the appraisal theory of emotion, stress arises when a person evaluates a situation as personally relevant and perceives that they do not have the resources to cope or handle the specific situation. The activation of social stress does not necessarily have to occur linked to a specific event, the mere idea that the event may occur could trigger it.