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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.
This book investigates the stability and vibrations of conductive,
perfectly conductive and superconductive thin bodies in
electromagnetic fields. It introduces the main principles and
derives basic equations and relations describing interconnected
mechanical and electromagnetic processes in deformable electro
conductive 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 and special emphasis is placed on the
mechanical interactions of superconducting thin-body plates with
magnetic fields.
This book investigates the stability and vibrations of conductive,
perfectly conductive and superconductive thin bodies in
electromagnetic fields. It introduces the main principles and
derives basic equations and relations describing interconnected
mechanical and electromagnetic processes in deformable electro
conductive 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 and special emphasis is placed on the
mechanical interactions of superconducting thin-body plates with
magnetic fields.
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.
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