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Viscoelasticity --- Rheology --- Viscoélasticité --- Rhéologie --- 532.13 --- Internal friction. Viscosity --- 532.13 Internal friction. Viscosity --- Viscoélasticité --- Rhéologie --- Continuum mechanics --- Elasticity --- Viscosity --- Relaxation phenomena --- Colloids --- Deformations (Mechanics) --- Plasticity
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Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach: Theory and Practical Applications provides readers with knowledge of material viscoplasticity and robust modeling approaches for predicting plastic deformation of crystal aggregates. Visco-Plastic Self-Consistent (VPSC) is the identifier of a computer code developed for the specific mechanical regime addressed (visco-plastic: VP) and the approach used (self-consistent: SC) meant to simulate large plastic deformation of aggregates, thermo-elastic material deformation, as well as predict stress-strain response, texture evolution of aggregates and stress-strain state inside grains. This approach is very versatile and able to tackle arbitrary material symmetry (cubic, hexagonal, trigonal, orthorhombic, triclinic), twinning, and multiphase aggregates. It accounts for hardening, reorientation and shape change of individual grains, and can be applied to the deformation of metals, inter-metallics and geologic aggregates. Readers will have access to a companion website where they can download code and modify its input/output or add subroutines covering specific simulation research needs.
Civil engineering. --- Engineering --- Public works --- Viscoelasticity --- Materials --- Mathematical models. --- Properties. --- Viscoélasticité --- Matériaux --- Civil Engineering. --- Modèles mathématiques. --- Propriétés. --- Mathematical models
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Polymer Engineering Science and Viscoelasticity: An Introduction provides a unified mechanics and materials perspective on polymers: both the mathematics of viscoelasticity theory, as well as the physical mechanisms behind polymer deformation processes. Written for advanced seniors seeking graduate level courses, first and second year graduate students and practicing engineers, this volume describes the relationship between mechanical properties and the basic molecular structure and mechanisms associated with the performance of structures made from polymer based materials. Clearly written in an organized manner, readers need only basic knowledge of solid mechanics and materials science in order to use this reference successfully. Introductory material on fundamental mechanics is included to provide a continuous baseline for readers from all disciplines. Introductory material on the chemical and molecular basis of polymers is also included, which is essential to the understanding of the thermomechanical response. This self-contained text covers the viscoelastic characterization of polymers including constitutive modeling, experimental methods, thermal response and stress and failure analysis. Example problems are provided within the text as well as at the close of each chapter. Polymer Engineering Science and Viscoelasticity: An Introduction provides an excellent overview suited to cross-disciplinary engineers and scientists who need to understand the basic background of polymeric behavior to rigorous mechanics approaches to the design of structures made with polymer based materials.
Classical mechanics. Field theory --- Fluid mechanics --- Solid state physics --- Macromolecules --- Materials sciences --- materiaalkennis --- fysica --- mechanica --- polymeren --- fysicochemie --- Polymers --- Viscoelasticity --- Polymer engineering --- Polymères --- Viscoélasticité --- Génie des polymères --- Viscosity --- Viscosité --- EPUB-LIV-FT SPRINGER-B LIVCHIMI
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Creep And Relaxation Of Nonlinear Viscoelastic Materials With An Introduction To Linear Viscoelasticity
Mechanical properties of solids --- Applied physical engineering --- Viscoelasticity. --- Materials --- Creep. --- Viscoelasticity --- #TWER:BOEK --- Creep of materials --- Deformations (Mechanics) --- Plasticity --- Stress relaxation (Physics) --- Continuum mechanics --- Elasticity --- Viscosity --- Relaxation phenomena --- Creep --- Viscoélasticité --- Matériaux --- Fluage --- Viscoelastic materials --- Matériaux viscoélastiques. --- Matériaux --- Relaxation des contraintes. --- Fluage. --- Matériaux viscoélastiques.
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