ASM Metals Handbook Vol 20 Materials Selection and Design

ASM Metals Handbook Vol 20 Materials Selection and Design
اسم المؤلف
ASM International Handbook Committee
8 مايو 2016

ASM Metals Handbook Vol 20 Materials Selection and Design
Table of Contents
Section Features
Front Matter
Table of Contents
Interactive Graphs
Introduction to Composites
1. Introduction to Composites Constituent Materials
2. Introduction to Constituent Materials
3. Introduction to Reinforcing Fibers
4. Glass Fibers
5. Carbon Fibers
6. Aramid Fibers
7. Ceramic Fibers
8. Discontinuous Reinforcements for Metal-Matrix Composites
9. Continuous Fiber Reinforcements for Metal-Matrix Composites
10. Fabrics and Preforms
11. Braiding
12. Epoxy Resins
13. Polyester Resins
14. Bismaleimide Resins
15. Polyimide Resins
16. Phenolic Resins
17. Cyanate Ester Resins
18. Thermoplastic Resins
19. Molding Compounds
20. Metallic Matrices
21. Ceramic Matrices
22. Carbon Matrices
23. Interfaces and Interphases
24. Lightweight Structural Cores
25. Bio-Based Resins and Natural Fibers Engineering Mechanics, Analysis, and Design
26. Introduction to Engineering Mechanics, Analysis, and Design
27. Micromechanics
28. Macromechanics Analysis of Laminate Properties
29. Characterizing Strength from a Structural Design Perspective
30. Fracture Mechanics of Composite Delamination
31. Hygrothermal Behavior
32. Fatigue and Life Prediction
33. Damping Properties
35. Instability Considerations
36. Damage Tolerance
37. Out-of-Plane Analysis
38. Analysis of Sandwich Structures
39. Finite Element Analysis
40. Computer Programs
41. Testing and Analysis Correlation
42. Design Criteria
43. Design Allowables
44. Computer-Aided Design and Manufacturing
45. Design, Tooling, and Manufacturing Interaction
46. Cost Analysis
47. Rapid Prototyping
48. Design Guidelines
49. Engineering Mechanics and Analysis of Metal-Matrix Composites
50. Fracture Analysis of Fiber-Reinforced Ceramic-Matrix Composites Manufacturing Processes
51. Introduction to Manufacturing of Polymer-Matrix Composites
52. Process Modeling
53. Composite Tooling
54. Electroformed Nickel Tooling
55. Elastomeric Tooling
56. Open Molding: Hand Lay-up and Spray-up
57. Custom Sailing Yacht Design and Manufacture
58. Prepreg and Ply Cutting
59. Manual Prepreg Lay-up
60. Fiber Placement
61. Automated Tape Laying
62. Curing
63. Resin Transfer Molding and Structural Reaction Injection Molding
64. Vacuum Infusion
65. Compression Molding
66. Filament Winding
67. Pultrusion
68. Tube Rolling
69. Thermoplastic Composites Manufacturing
70. Processing of Metal-Matrix Composites
71. Processing of Ceramic-Matrix Composites
72. Processing of Carbon-Carbon Composites Post-Processing and Assembly
73. Introduction to Post-Processing and Assembly
74. Machining, Trimming, and Routing of Polymer-Matrix Composites
75. Secondary Adhesive Bonding of Polymer-Matrix Composites
76. Processing and Joining of Thermoplastic Composites
77. Hole Drilling in Polymer-Matrix Composites
78. Mechanical Fastener Selection
79. Environmental Protection and Sealing
80. Extrusion of Particle-Reinforced Aluminum Composites
81. Post-Processing and Assembly of Ceramic-Matrix Composites Quality Assurance
82. Introduction to Quality Assurance
83. Resin Properties Analysis
84. Tooling and Assembly Quality Control
85. Reinforcing Material Lay-up Quality Control
86. Cure Monitoring and Control
87. Nondestructive Testing
88. Quality Assurance of Metal-Matrix Composites Testing and Certification
89. Introduction to Testing and Certification
90. Overview of Testing and Certification
91. Test Program Planning
92. Constituent Materials Testing
93. Lamina and Laminate Nonmechanical Testing
94. Lamina and Laminate Mechanical Testing
95. Element and Subcomponent Testing
96. Full-Scale Structural Testing Properties and Performance
97. Properties and Performance of Polymer-Matrix Composites
98. Properties of Metal-Matrix Composites
99. Properties and Performance of Ceramic-Matrix and Carbon-Carbon Composites Product Reliability, Maintainability, and Repair
100. Introduction to Product Reliability, Maintainability, and Repair
101. Designing for Repairability
102. Repair Engineering and Design Considerations
103. Repair Applications, Quality Control, and Inspection
104. Ship Structure Repairs
105. Rehabilitation of Reinforced Concrete Structures Using Fiber-Reinforced Polymer Composites
106. Maintainability Issues
107. Bonded Repair of Metal Structures Using Composites
108. Worldwide Repair Standardization
109. Product Reliability, In-Service Experience, and Lessons Learned Failure Analysis
110. Introduction to Failure Analysis
111. Failure Causes
112. Failure Analysis Procedures
113. Visual Analysis, Nondestructive Testing, and Destructive Testing
114. Microscopy
115. Thermal Analysis
116. Fractography
117. Case Histories
118. Fatigue Properties and Quantitative Fractography of Metal-Matrix Composites
119. Failure Analysis of Ceramic-Matrix Composites
119. Failure Analysis of Ceramic-Matrix CompositesRecycling and Disposal
120. Introduction to Recycling and Disposal of Composites
121. Recycling and Disposal of Polymer-Matrix Composites
122. Recycling and Disposal of Metal-Matrix Composites Applications and Experience
123. Introduction to Applications
124. Automotive Applications
125. Automotive Applications of Metal-Matrix Composites
126. Space Applications
127. Aeronautical Applications of Metal-Matrix Composites
128. High-Temperature Applications
129. Aircraft Applications
130. Applications of Carbon-Carbon Composites
131. Sports and Recreation Equipment Applications
132. Thermal Management and Electronic Packaging Applications
133. Marine Applications
134. Civil Infrastructure Applications
135. Applications of Ceramic-Matrix Composites
Reference Information
Glossary of Terms
Metric Conversion Guide
Abbreviations and Symbols
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