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Magnétoélasticité. --- Magnetostriction. --- Magnétoélasticité.
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This book highlights key methods for the mathematical modeling and solution of nonstationary dynamic problems in the theory of magnetoelasticity. It also reveals the richness of physical effects caused by the interaction of electromagnetic and mechanical phenomena in both conducting non-ferromagnetic and dielectric magnetically active deformable bodies. The studies are limited to elastic bodies considering small deformations. The book consists of two parts, the first of which derives the system of equations for describing magnetoelasticity, the surface conditions, and equations describing the perturbations behavior of non-ferromagnetic conducting media interacting with external magnetic fields. These equations are based on the main nonlinear equations and relations of mechanics and quasistatic electrodynamics of continuous media. On this basis, the book puts forward a number of qualitative and quantitative results, solving selected problems of magnetoelastic wave propagation. In turn, the second part considers surface waves in magnetostrictive and piezomagnetic media. It obtains the system of equations, surface conditions and state equations describing the perturbations behavior in magnetoactive ferromagnetic dielectric media interacting with external magnetic fields. Lastly, the book studies the excitations and propagation of new types of surface waves and oscillations in these media, conditioned by the magnetostrictive properties of the respective medium and its interaction with an external magnetic field.
Engineering. --- Continuum mechanics. --- Continuum Mechanics and Mechanics of Materials. --- Magnetostriction. --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Magnetism --- Mechanics. --- Mechanics, Applied. --- Solid Mechanics. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory
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Magnetic materials --- Magnetism --- Magnetostriction --- Nanostructured materials --- -Thin films --- -Films, Thin --- Solid film --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films --- Nanomaterials --- Nanometer materials --- Nanophase materials --- Nanostructure controlled materials --- Nanostructure materials --- Ultra-fine microstructure materials --- Microstructure --- Nanotechnology --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Materials --- Magnetic properties --- Thin films
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Handbook of Giant Magnetostrictive Materials contains the knowledge that a mechanical or an electrical engineer needs when considering the use of magnetostrictive materials in a construction project. The book covers the physical origin of giant magnetostriction, its manufacturing and metallurgy, and grain related processes under operation. Comprehensive descriptions of useful models of design methods and tools are given, including the performance of devices and systems comprised of magnetostrictive materials, considering the electrical, magnetic, mechanical, and thermal effects. The
Smart materials --- Magnetostrictive transducers --- Thin film devices --- Electromagnetic fields. --- Magnetostriction. --- Materials science. --- Material science --- Physical sciences --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Magnetism --- Fields, Electromagnetic --- Magnetic fields --- Electric fields --- Devices, Thin film --- Electronic apparatus and appliances --- Thin films --- Transducers --- Adaptive materials --- Intelligent materials --- Sense-able materials --- Materials --- Mechanical properties. --- Materials.
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This book provides a unified theory of nonlinear electro-magnetomechanical interactions of soft materials capable of large elastic deformations. The authors include an overview of the basic principles of the classical theory of electromagnetism from the fundamental notions of point charges and magnetic dipoles through to distributions of charge and current in a non-deformable continuum, time-dependent electromagnetic fields and Maxwell’s equations. They summarize the basic ingredients of continuum mechanics that are required to account for the deformability of material and present nonlinear constitutive frameworks for electroelastic and magnetoelastic interactions in a highly deformable material. The equations contained in the book are used to formulate and solve a variety of representative boundary-value problems for both nonlinear electroelasticity and magnetoelasticity.
Computer engineering. --- Elasticity. --- Engineering. --- Magnetostriction. --- Materials. --- Mechanics, applied. --- Nonlinear theories. --- Piezoelectric materials. --- Piezoelectric materials --- Magnetostriction --- Elasticity --- Nonlinear theories --- Physics --- Electrical & Computer Engineering --- Physical Sciences & Mathematics --- Engineering & Applied Sciences --- Electricity & Magnetism --- Electrical Engineering --- Nonlinear problems --- Nonlinearity (Mathematics) --- Elastic properties --- Young's modulus --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Materials, Piezoelectric --- Mechanics. --- Mechanics, Applied. --- Continuum mechanics. --- Electrical engineering. --- Electrical Engineering. --- Theoretical and Applied Mechanics. --- Continuum Mechanics and Mechanics of Materials. --- Calculus --- Mathematical analysis --- Mathematical physics --- Matter --- Statics --- Rheology --- Strains and stresses --- Strength of materials --- Magnetism --- Properties --- Solid Mechanics. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Dynamics --- Quantum theory --- Computers --- Design and construction --- Electric engineering --- Engineering
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This volume presents a state-of-the-art overview of the continuum theory of both electro- and magneto-sensitive elastomers and polymers, which includes mathematical and computational aspects of the modelling of these materials from the point of view of material properties and, in particular, the "smart-material" control of their mechanical properties.
Continuum mechanics. --- Electromagnetism. --- Membranes (Technology). --- Smart materials. --- Mechanics --- Electrodynamics --- Magnetostriction --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Classical mechanics --- Newtonian mechanics --- Engineering. --- Computer mathematics. --- Vibration. --- Dynamical systems. --- Dynamics. --- Materials science. --- Continuum Mechanics and Mechanics of Materials. --- Computational Science and Engineering. --- Materials Science, general. --- Vibration, Dynamical Systems, Control. --- Magnetism --- Dynamics --- Physics --- Quantum theory --- Mechanics. --- Mechanics, Applied. --- Computer science. --- Materials. --- Solid Mechanics. --- Cycles --- Sound --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Informatics --- Science --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Materials --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Statics --- Material science --- Physical sciences --- Computer mathematics --- Electronic data processing
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This monograph investigates the stability and vibrations of conductive, perfectly conductive and superconductive thin bodies in electromagnetic fields. It introduces the main principles and obtains basic equations and relations describing interconnected mechanical and electromagnetic processes in deformable electroconductive bodies placed in an external inhomogeneous magnetic field and under the influence of various types of force interactions. Basic equations and relations are addressed in the nonlinear formulation. A special emphasis is put on the mechanical interaction of superconducting thin bodies plates with magnetic field.
Materials Science --- Applied Mathematics --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Magnetostriction. --- Elastic plates and shells. --- Elastic shells --- Plates, Elastic --- Shells, Elastic --- Magnetoelasticity --- Magnetostriction constant --- Magnetostriction saturations --- Negative magnetostriction --- Positive magnetostriction --- Elastic waves --- Elasticity --- Plasticity --- Magnetism --- Mechanics. --- Mechanics, Applied. --- Computer science --- Surfaces (Physics). --- Solid Mechanics. --- Classical Mechanics. --- Computational Mathematics and Numerical Analysis. --- Characterization and Evaluation of Materials. --- Mathematics. --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Surface chemistry --- Surfaces (Technology) --- Computer mathematics --- Discrete mathematics --- Electronic data processing --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Mathematics --- Computer mathematics. --- Materials science. --- Material science --- Physical sciences
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