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Deformation Based Processing of Materials: Behavior, Performance, Modeling and Control focuses on deformation based process behaviors and process performance in terms of the quality of the needed shape, geometries, and the requested properties of the deformed products. In addition, modelling and simulation is covered to create an in-depth and epistemological understanding of the process. Other topics discussed include ways to efficiently reduce or avoid defects and effectively improve the quality of deformed parts. The book is ideal as a technical document, but also serves as scientific literature for engineers, scientists, academics, research students and management professionals involved in deformation based materials processing.
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Hot deformation is a key method of processing metallic materials and controlling their final properties through structure-forming processes. The ability to exploit the structural potentiality of both traditional alloys and new progressive materials is crucial in terms of sustainable development and economic growth. This reprint focuses not only on conventional technologies (e.g., rolling or forging) but also on modern procedures, such as various types of complex thermomechanical processing and controlled cooling. Most papers are based on the application of advanced hot deformation simulators and structural analysis methods, as well as computer simulations of bulk-forming processes.
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This book presents the proceedings of the International Conference on Residual Stresses 9 and is devoted to the prediction/modelling, evaluation, control, and application of residual stresses in engineering materials. The state of the art is presented by the contributions of researchers from both academia and industry. New developments, on stress-measurement techniques, on modelling and prediction of residual stresses and on progress made in the fundamental understanding of the relation between the state of residual stress and the material properties, are highlighted. Focal points of interest
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La rhéologie est une spécialité située à l’interface de plusieurs disciplines : la physique, la mécanique des fluides, la mécanique des solides et la physico-chimie de la matière molle. Elle constitue un outil analytique très puissant mais la mise en œuvre et l’analyse des tests expérimentaux qu’elle réalise, soulèvent des problèmes tant théoriques que techniques. Écrit par les meilleurs spécialistes français de la rhéométrie, ce livre couvre la très large diversité des comportements rhéologiques connus, ainsi que la grande variété des outils expérimentaux et théoriques élaborés pour caractériser ces comportements. Il offre un panorama des méthodes utilisées et de la mise en œuvre de la mesure rhéologique, par un éclairage de certaines analyses classiques, mais surtout par une approche des techniques récentes et novatrices. La présentation est concrète et pédagogique en illustrant les différentes analyses par de nombreux exemples empruntés tant au domaine académique qu’industriel. Cet ouvrage de référence s’adresse aux enseignants, aux étudiants (master, doctorat, élèves ingénieurs), aux chercheurs, mais aussi, de par sa recherche de simplicité et de pédagogie, à tout lecteur pratiquant ou susceptible de pratiquer les analyses expérimentales de la rhéologie.
Rheology. --- Colloids --- Deformations (Mechanics) --- Elasticity --- Plasticity --- Viscosity
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"Side Effects in Plasticity: From Macro to Nano provides concise explanations of all available methods in this area, from atomistic simulation, to non-local continuum models to capture size effects. It then compares their applicability to a wide range of research scenarios. This essential guide addresses basic principles, numerical issues and computation, applications and provides code which readers can use in their own modeling projects. Researchers in the fields of computational mechanics, materials science and engineering will find this to be an ideal resource when they address the size effects observed in deformation mechanisms and strengths of various materials"--
Plasticity. --- Cohesion --- Deformations (Mechanics) --- Elasticity --- Plastics --- Rheology
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