This book presents the theory on static Green's functions in anisotropic magnetoelectroelastic media and their detailed derivations via different methods.
This book presents the theory on static Green's functions in anisotropic magnetoelectroelastic media and their detailed derivations via different methods.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Ernian Pan is a Professor of Civil Engineering at the University of Akron and a Fellow of both ASME and ASCE. He received his BS from Lanzhou University, his MS from Peking University, and his PhD from the University of Colorado, Boulder. His research interests are in computational mechanics with applications to anisotropic magnetoelectroelastic solids and nanostructures. As a well-recognized expert in anisotropic and multilayered Green's functions, he has pioneered various benchmark solutions for multiphase and multilayered composites with functionally graded materials and played various active roles in, and contributed to, Green's function research and education. He has published more than 250 journal articles.
Inhaltsangabe
1. Introduction 2. Governing equations 3. Green's functions in elastic isotropic full and bimaterial planes 4. Green's functions in magnetoelectroelastic full and bimaterial planes 5. Green's functions in elastic isotropic full and bimaterial spaces 6. Green's functions in a transversely isotropic magnetoelectroelastic full space 7. Green's functions in a transversely isotropic magnetoelectroelastic biomaterial 8. Green's functions in an anisotropic magnetoelectroelastic full space 9. Green's functions in an anisotropic magnetoelectroelastic bimaterial space.
1. Introduction 2. Governing equations 3. Green's functions in elastic isotropic full and bimaterial planes 4. Green's functions in magnetoelectroelastic full and bimaterial planes 5. Green's functions in elastic isotropic full and bimaterial spaces 6. Green's functions in a transversely isotropic magnetoelectroelastic full space 7. Green's functions in a transversely isotropic magnetoelectroelastic biomaterial 8. Green's functions in an anisotropic magnetoelectroelastic full space 9. Green's functions in an anisotropic magnetoelectroelastic bimaterial space.
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