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.
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.
Gevorg Baghdasaryan
Asymptotic methods Conductive continuous medium Magnetic damping effects Magnetoelastic vibrations Parametric vibrations Superconducting plate Superconducting shell
“This book provides a solid foundation and life-long reference for anyone studying the stability and vibrations of conductive, perfectly conductive and superconductive thin bodies in electromagnetic fields. … This book can be useful for specialists in engineering mechanics, continuum mechanics and applied mathematics.” (Viatcheslav I. Priimenko, Mathematical Reviews, August, 2016)