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Anisotropic Elasticity: Theory and Applications

Journal of Applied Mechanics · 1996 · Vol. 63(4) · pp. 1056–1056
T. C. T. TingCornelius O. Horgan

Abstract

1. Matrix Algebra 2. Linear Anisotropic Elastic Materials 3. Antiplane Deformations 4. The Lekhnitskii Formalism 5. The Stroh Formalism 6. The Structures and Identities of the Elasticity Matrices 7. Transformation of the Elasticity Matrices and Dual Coordinate Systems 8. Green's Functions for Infinite Space, Half-space, and Composite Space 9. Particular Solutions, Stress Singularities, and Stress Decay 10. Anisotropic Matrials with an Elliptic Boundary 11. Anisotropic Media with a Crack or a Rigid Line Inclusion 12. Steady State Motion and Surface Waves 13. Degenerate and Near Degenerate Materials 14. Generalization of the Stroh Formulism 15. Three-Dimensionsal Deformations

Elasticity and Wave PropagationElasticity (physics)AnisotropyMaterials scienceClassical mechanicsPhysicsComposite materialOptics
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