
كتاب
ASM Metals Handbook Vol 08 Mechanical Testing and Evaluation
Introduction to Mechanical Testing and Evaluation
1. Introduction to the Mechanical Behavior of Metals
2. Introduction to the Mechanical Behavior of Nonmetallic Materials
3. Mechanical Testing of Polymers and Ceramics
4. Overview of Mechanical Properties and Testing for Design
5. Mechanical Testing for Metalworking Processes
6. Testing Machines and Strain Sensor
7. Accreditation of Mechanical Testing Laboratories
Tension, Compression, Bend, and Shear Testing
8. Mechanical Behavior under Tensile and Compressive Loads
9. Stress-Strain Behavior in Bending
10. Fundamental Aspects of Torsional Loading
11. Uniaxial Tension Testing
12. Uniaxial Compression Testing
13. Hot Tension and Compression Testing
14. Tension and Compression Testing at Low Temperatures
15. Bend Testing
16. Shear, Torsion, and Multiaxial Testing
Hardness Testing
17. Introduction to Hardness Testing
18. Macroindentation Hardness Testing
19. Microindentation Hardness Testing
20. Instrumented Indentation Testing
21. Indentation Hardness Testing of Ceramics
22. Miscellaneous Hardness Tests
23. Selection and Industrial Applications of Hardness Tests
24. Gage Repeatability and Reproducibility in Hardness Testing
25. Hardness Conversions for Steels
Friction, Wear, and Surface Testing
26. Introduction to Adhesion, Friction, and Wear Testing
27. Adhesion Testing
28. Testing Methods for Solid Friction
29. Scratch Testing
30. Abrasive Wear Testing
31. Solid Particle Erosive Wear Testing
32. Sliding Contact Damage Testing
Creep and Stress-Relaxation Testing
33. Introduction to Creep and Stress-Relaxation Testing
34. Creep Deformation of Metals, Polymers, Ceramics, and Composites
35. Creep and Creep-Rupture Testing
36. Assessment and Use of Creep-Rupture Properties
37. Stress Relaxation Testing
38. Influence of Multiaxial Stresses on Creep and Creep Rupture of Tubular Components
39. Superplastic Deformation at Elevated Temperatures
High Strain Rate Testing
40. Introduction to High Strain Rate Testing
41. High Strain Rate Tension and Compression Tests
42. High Strain Rate Shear Testing
43. Classic Split-Hopkinson Pressure Bar Testing
44. Recovery Hopkinson Bar Techniques
45. Split-Hopkinson Pressure Bar Testing of Soft Materials
46. Split-Hopkinson Pressure Bar Testing of Ceramics
47. Torsional Kolsky Bar Testing
48. Triaxial Hopkinson Techniques
49. Dynamic Indentation Testing
50. Shock Wave Testing of Ductile Materials
51. Low-Velocity Impact Testing
Impact Toughness Testing and Fracture Mechanics
52. Fracture Toughness and Fracture Mechanics
53. Fracture Toughness Testing
54. Creep Crack Growth Testing
55. Impact Toughness Testing
56. Evaluation of Environmentally Assisted Crack Growth
57. Fracture Resistance Testing of Plastics
58. Fracture Toughness of Ceramics and Ceramic Matrix Composites
59. Fracture Resistance Testing of Brittle Solids
Fatigue Testing
60. Fatigue and Fracture Mechanics
61. Fatigue, Creep Fatigue, and Thermomechanical Fatigue Life Testing
62. Ultrasonic Fatigue Testing
63. Fretting Fatigue Testing
64. Fatigue Crack Growth Testing
65. Fatigue Testing and Behavior of Plastics
66. Fatigue Testing of Brittle Solids
67. Multiaxial Fatigue Testing
Component Testing
68. Introduction to Mechanical Testing of Components
69. Testing for Deformation Modeling
70. Mechanical Testing of Threaded Fasteners and Bolted Joints
71. Testing of Adhesive Joints
72. Mechanical Testing of Welded Joints
73. Testing of Bearings
74. Mechanical Testing of Gears
75. Testing of Pressure Vessels, Piping, and Tubing
76. Residual Stress Measurements
77. Mechanical Testing of Fiber-Reinforced Composites
Reference Information
78. Property Comparison Tables: Hardness and Tensile Properties
Glossary of Terms
Metric Conversion Guide
Abbreviations and Symbols
Index
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