Nonlinear Theory of Electroelastic and Magnetoelastic Interactions

Nonfiction, Science & Nature, Technology, Electricity, Engineering, Mechanical
Cover of the book Nonlinear Theory of Electroelastic and Magnetoelastic Interactions by Ray W. Ogden, Luis Dorfmann, Springer US
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Author: Ray W. Ogden, Luis Dorfmann ISBN: 9781461495963
Publisher: Springer US Publication: February 6, 2014
Imprint: Springer Language: English
Author: Ray W. Ogden, Luis Dorfmann
ISBN: 9781461495963
Publisher: Springer US
Publication: February 6, 2014
Imprint: Springer
Language: English

This book provides a unified theory on nonlinear electro-magnetomechanical interactions of soft materials capable of large elastic deformations. The authors include an overview of the basic principles of the classic 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 relevant theories of continuum mechanics, required to account for the deformability of material and present a constitutive framework for the nonlinear magneto-and electroelastic interactions in a highly deformable material. The equations contained in the book formulate and solve a variety of representative boundary-value problems for both nonlinear magnetoelasticity and electroelasticity.

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This book provides a unified theory on nonlinear electro-magnetomechanical interactions of soft materials capable of large elastic deformations. The authors include an overview of the basic principles of the classic 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 relevant theories of continuum mechanics, required to account for the deformability of material and present a constitutive framework for the nonlinear magneto-and electroelastic interactions in a highly deformable material. The equations contained in the book formulate and solve a variety of representative boundary-value problems for both nonlinear magnetoelasticity and electroelasticity.

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