Mechanics today. Vol. 3 /
Mechanics Today, Volume 3 provides the advances in the fields of solid and fluid mechanics and applied mathematics. This volume is divided into six chapters that discuss the fundamentals and analytical and experimental results of dynamic behavior of linear and nonlinear systems. Chapter I provides a...
Clasificación: | Libro Electrónico |
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Autor Corporativo: | |
Otros Autores: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
New York ; Oxford :
Pergamon [for] the American Academy of Mechanics,
1976.
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Colección: | Pergamon mechanics today series.
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Front Cover; Mechanics Today; Copyright Page; Table of Contents; Contributors; Preface; Contents of Volume 1; Contents of Volume 2; Summary; Chapter I. On Modeling the Dynamics of Composite Materials; 1. Introduction; 2. Theoretical and Experimental Background; 3. Structured Continuum Theory; 4. Results of the Theory; 5. Experimental Methods; 6. Potential Future Developments; 7. References; Chapter II. The Analysis of Elastodynamic Crack Tip Stress Fields; 1. Introduction; 2. Equations of Linear Elastodynamics; 3. Crack Tip Stress Fields; 4. Energy Considerations.
- 5. Stationary Crack under Dynamic Loading6. Crack Extension at Nonuniform Rates; 7. Continuous Distribution of Moving Dislocations; 8. Discussion; 9. References; Chapter III. Random Vibration of Periodic and Almost Periodic Structures; 1. Introduction; 2. Discrete Periodic Systems; 3. Continuous Periodic System-Point Loading; 4. Continuous Periodic System-Convected Loading; 5. Concluding Remarks; Acknowledgement; 6. References; Appendix A; Chapter IV. Integral Representations and the Oseen Flow Problem; 1. Introduction; 2. Integral Formulation; 3. Structure of the Problem.
- 4. Results on Integral Equations5. Solutions of the Oseen Problem for Planar Flows; 6. Concluding Remarks; Acknowledgement; 7. References; Chapter V. On Nonlinear Gyroscopic Systems; 1. Introduction; 2. Derivation of Equations of Motion; 3. Weakly Nonlinear Systems and Linearization; 4. Weakly Nonlinear Systems-Hamiltonian Formulation; 5. High Spin Gyroscopic Systems; Acknowledgment; 6. References; Chapter VI. Application of the WKB Method in Solid Mechanics; 1. Introduction; 2. First Approximation; 3. Successive Corrections; 4. Formal Expansions for Transition Points.
- 5. Vibration with Transition PointAcknowledgments; 6. References; Author Index; Subject Index.