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Inelasticity and micromechanics of metal matrix composites /

This book contains fifteen papers based on the presentations made at the symposium on ""Inelasticity and Micromechanics of Metal Matrix Composites"" held at the University of Washington, USA, in mid-1994. The papers represent the most recent work conducted on inelasticity and mic...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor Corporativo: U.S. National Congress of Applied Mechanics
Otros Autores: Voyiadjis, G. Z. (Editor ), Ju, J. W. (Editor )
Formato: Electrónico Congresos, conferencias eBook
Idioma:Inglés
Publicado: Amsterdam ; New York : Elsevier, 1994.
Colección:Studies in applied mechanics ; 41.
Temas:
Acceso en línea:Texto completo
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Tabla de Contenidos:
  • Front Cover; Inelasticity and Micromechanics of Metal Matrix Composites; Copyright Page; Foreword; Table of Contents; PART I: INELASTICITY OF METAL MATRIX COMPOSITES; Chapter 1. Rate effects in hot isostatic pressing of a unidirectional SiC/Ti composite; 1. INTRODUCTION; 2. ANALYSIS OF THE STANDARD HIP PROCESS; 3. ANALYSIS OF MODIFIED HlP CYCLES; 4. REHEATING TO 500�C AND 980�C; 5. ROLE OF CONFINING PRESSURE; 6. CLOSURE; ACKNOWLEDGEMENT; REFERENCES; APPENDIX; Chapter 2. Effect of oxidation on damage evolution in titanium matrix MMC's; ABSTRACT; 1.0 INTRODUCTION; 2.0 MODEL FORMULATION.
  • 3.0 ANALYSIS AND DISCUSSION4.0 CONCLUSIONS; ACKNOWLEDGEMENTS; REFERENCES; Chapter 3. A cyclic plasticity model for metal-matrix-composites using an anisotropic yield surface; ABSTRACT; 1. INTRODUCTION; 2. DESCRIPTION OF THE YIELD SURFACE; 3. COMPARISON WITH EXISTING ANISOTROPIC YIELD FUNCTIONS; 4. NUMERICAL SIMULATION OF THE MODEL FOR INITIAL YIELDING; 5. CONSTITUTIVE MODELLING; 6. ELASTO-PLASTIC FORMULATION FOR CYCLIC LOADING; 7. EVAULATION OF ELASTO-PLASTIC STIFFNESS MATRIX; 8. NUMERICAL SIMULATION OF STRESS-STRAIN CURVES; 9. CONCLUSIONS; 10. ACKNOWLEDGEMENTS; REFERENCES.
  • Chapter 4. ELASTIC AND ELASTIC-PLASTIC PROPERTIES OF SILICON CARBIDE REINFORCED ALUMINUM MATRIX COMPOSITES1. INTRODUCTION; 2. EXPERIMENTS; 3. MICROMECHANICS MODELING; 4. RESULTS AND DISCUSSIONS; ACKNOWLEDGMENT; REFERENCES; Chapter 5. On the Mechanics of Plastic Deformation in Metal Matrix Composites; 1. INTRODUCTION; 2. A UNIT CELL MODEL; 3. RESULTS FOR VISCOPLASTIC MATERIALS; 4. EXPERIMENTAL RESULTS AND COMPARISON WITH THEORY; ACKNOWLEDGEMENT; REFERENCES; APPENDIX; PART II: MICROMECHANICS OF METAL MATRIX COMPOSITES.
  • Chapter 6. Effective Elastoplastic Behavior of Two-Phase Metal Matrix Composites: Micromechanics and Computational AlgorithmsABSTRACT; 1. INTRODUCTION; 2. EFFECTIVE ELASTOPLASTIC BEHAVIOR OF PRMMCS; 3. Effective elasto-viscoplastic behavior of two-phase PRMMCs; 4. Closure; 5. References; Chapter 7. Micromechanic and macroscopic thermoviscoplastic behavior of short fibre MMC; ABSTRACT; 1. INTRODUCTION; 2. MICRO-MACRO ANALYSIS; 3. MACROSCOPIC MODEL; 4. CONCLUSION; REFERENCES; Chapter 8. Micromechanics of active metal matrix composites with shape memory alloy fibers; ABSTRACT; 1. INTRODUCTION.
  • 2. 3-D CONSTITUTIVE EQUATIONS FOR THE SMA MATERIAL3. FINITE ELEMENT ANALYSIS FOR AMMC COMPOSITES; 4. RESULTS AND DISCUSSION; 5. CONCLUSIONS; Acknowledgement; REFERENCES; LIST OF FIGURES; Chapter 9. Experiments of Crack-Fiber Interactions in Composites with Frictional Interfaces; 1. ABSTRACT; 2. INTRODUCTION; 3. FRACTURE MECHANICS APPROACH; 4. SURFACE INTEGRAL METHOD; 5. COMPUTATIONAL MODELS OF THE CRACK-INTERFACE INTERACTION; 6. EXPERIMENTAL VALIDATION; REFERENCES; Chapter 10. Micromechanical determination of the viscoplastic behavior of a metal-matrix composite; Abstract; 1. INTRODUCTION.