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Mechanics of solids /

An important collection of review papers by internationally recognized experts on the broad area of the mechanics of solids.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Hill, Rodney, 1921-2011, Hopkins, H. G. (Harry Geoffrey), Sewell, M. J. (Michael J.), 1934-
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Oxford ; New York : Pergamon Press, 1982.
Edición:First edition.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Front Cover; Mechanics of Solids: The Rodney Hill 60th Anniversary Volume; Copyright Page; Editors' Preface; Table of Contents; Dedication; List of Publications by Rodney Hill; Contributors; Chapter 1. Distortions and Interactions in a Fast Reactor Core; Summary; 1. Introduction; 2. Core Design Styles; 3. Neutron-induced Void Swelling and Irradiation Creep; 4. Sub-assembly Distortions; 5. Core Interactions; 6. Indicative Results; 7. Conclusion; Acknowledgement; References; Chapter 2. Void Growth and Collapse in Viscous Solids; Summary; 1. Introduction.
  • 2. Governing Equations for a Void in a Linearly Viscous Solid3. Evolution of an Initially Spherical Void under Various S/T in a Linearly Viscous Material; 4. Deformation of an Infinite Cylindrical Void in a Nonlinearly Viscous Material; 5. Deformation-rate of a Spherical Void in a Nonlinearly Viscous Solid; 6. High-triaxiality Approximation of Growth-rate of Spherical Void; 7. Strain to Void Coalescence from Asymptotic Growth-rates (S> T> 0); Acknowledgements; References; Chapter 3. Surface Waves in Cubic Elastic Materials; Summary; 1. Introduction; I. FORMULATION; 2. Elastic Body Waves.
  • 3. Elastic Surface Waves4. A Programme for Investigating the Existence of Surface Waves; 5. Exceptional Waves; II. REALIZATION; 6. Cubic Symmetry; 7. Properties of Body Waves; 8. The Slowness Surface; 9. The Polarization Field; 10. Exceptional Wave Solutions; 11. Exceptional Limiting Waves; III. APPLICATION; 12. The Existence of Surface Waves in Cubic Elastic Media; 13. Preliminary Consideration of Particular Cases; 14. Case 1. The Surface Wave along a Face Diagonal in a Face; 15. Case 2. The Surface Wave along a Face Diagonal in a Face Bisector.
  • 16. Case 3. The Surface Wave along an Octahedral Diagonal in an Octahedral PlaneAcknowledgement; References; Chapter 4. Universal Bifurcation Problems; Summary; 1. Introduction and Formulation of the Problem; 2. Preliminaries; 3. Understanding the Global Picture; 4. Manifolds and Transversality; 5. Application to Families of Linear Operators; 6. Transversality and Bifurcation Problems; 7. Handling High Order Terms: Determinacy; 8. Algebraic Implications of p-Transversality; 9. Some General Classification Results; 10. Comments on Infinite Dimensions; References.
  • Chapter 5. Boundary Value Problems in Plane Strain PlasticitySummary; 1. Introduction; 2. Fundamentals of Slipline Fields; 3. Slipline Field Solutions of Direct Type
  • 4. Algebraic Properties of Slipline Fields; 5. Slipline Field Solutions of Indirect Type
  • 6. Anisotropy; 7. Strain Hardening; 8. Conclusions; Acknowledgements; References; Chapter 6. Aspects of the Theory of Dislocations; Summary; 1. Introduction; 2. The Elastic Field of a Dislocation; 3. The Effect of Free Surfaces; 4. Energetics of Dislocations; 5. Dislocations in Motion; References; Chapter 7. Superplasticity; Summary.