7 Chapter 9Figure 9.1 Representative volume elements...Figure 9.2 Predictions of the normalised...
8 Chapter 10Figure 10.1 Schematic diagram illustrating..
9 Chapter 11Figure 11.1 Geometry of a multilayered laminate...
10 Chapter 12Figure 12.1 Schematic diagram of a...Figure 12.2 Schematic diagram showing...
11 Chapter 13Figure 13.1 Schematic diagram of...Figure 13.2 Master curve for...Figure 13.3 The continuum model...Figure 13.4 Side view of a long...Figure 13.5 Schematic diagram of...Figure 13.6 Dependence of axial...Figure 13.7 Dependence of axial...Figure 13.8 Experimental fatigue [24] data...Figure 13.9 Dependence of in-plane...Figure 13.10 Dependence of through...
12 Chapter 14Figure 14.1 Schematic diagram of...Figure 14.2 The dependence of composite...Figure 14.3 The dependence of the...Figure 14.4 The dependence of the...Figure 14.5 The dependence of the...Figure 14.6 The dependence of the...Figure 14.7 The dependence of the...Figure 14.8 The dependence of the...Figure 14.9 The dependence of the...Figure 14.10 The dependence of the...Figure 14.11 The dependence of the...Figure 14.12 The dependence of composite...
13 Chapter 15Figure 15.1 (a) Discrete particle model...Figure 15.2 Comparison of results...Figure 15.3 Comparison of results...Figure 15.4 Comparison of results...Figure 15.5 Comparison of results...Figure 15.6 Comparison of results for...
14 Chapter 16Figure 16.1 Schematic diagram of...Figure 16.2 Schematic diagram showing...Figure 16.3 Schematic diagram showing the...Figure 16.4 Interfacial stress distributions...Figure 16.5 Interfacial stress distributions...Figure 16.6 Interfacial stress distributions...Figure 16.7 Interfacial stress distributions...Figure 16.8 Interfacial stress distributions...Figure 16.9 Interfacial stress distributions...Figure 16.10 Schematic diagram of...Figure 16.11 For debonded interfaces, typical...Figure 16.12 For debonded interfaces...
15 Chapter 17Figure 17.1 Schematic diagram of a...Figure 17.2 Dependence of the critical...Figure 17.3 Geometry and loading of...Figure 17.4 Geometry and loading of part...Figure 17.5 Stress intensity factors for...
16 Chapter 18Figure 18.1 Schematic diagram illustrating...Figure 18.2 Distribution of ply cracking...Figure 18.3 Illustration of the homogenisation...
17 Chapter 19Figure 19.1 Geometry of a multilayered nonsymmetrical...
18 Appendix J:Figure J1 Schematic diagram of a bridged...
1 Chapter 3 Table 3.1 Estimates of effective bulk... Table 3.2 Estimates of thermal expansion...
2 Chapter 12Table 12.1 Predictions of loading parameters...Table 12.2 Limiting loading parameters...
3 Chapter 15Table 15.1 Effective properties for random...Table 15.2 Effective properties for...Table 15.3 Predictions for C 1111...Table 15.4 Predictions for C 3333...Table 15.5 Comparison of effective properties...
4 Chapter 16Table 16.1 Values of matrix cracking...
5 Chapter 17Table 17.1 Elastic properties for...
1 Cover
2 Title page Properties for Design of Composite Structures Theory and Implementation Using Software Neil McCartney National Physical Laboratory, Teddington, Middlesex, UK
3 Copyright
4 Table of Contents
5 Preface
6 About the Companion Website
7 Begin Reading
8 Appendix A: Solution for Shear of Isolated Spherical Particle in an Infinite Matrix
9 Appendix B: Elasticity Analysis of Two Concentric Cylinders
10 Appendix C: Gibbs Energy per Unit Volume for a Cracked Laminate
11 Appendix D: Crack Closure Conditions for Laminates
12 Appendix E: Derivation of the Solution of Nonlinear Equations
13 Appendix F: Analysis for Transversely Isotropic Cylindrical Inclusions
14 Appendix G: Recurrence Relations, Differential Equations and Boundary Conditions
15 Appendix H: Solution of Differential Equations
16 Appendix I: Energy Balance Equation for Delamination Growth
17 Appendix J: Derivation of Energy-based Fracture Criterion for Bridged Cracks
18 Appendix K: Numerical Solution of Integral Equations for Bridged Cracks
19 Index
20 End User License Agreement
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