ASM Metals Handbook Vol 06 Welding, Brazing, and Soldering

ASM Metals Handbook Vol 06 Welding, Brazing, and Soldering
اسم المؤلف
ASM International Handbook Committee
التاريخ
9 مايو 2016
المشاهدات
التقييم
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كتاب
ASM Metals Handbook Vol 06 Welding, Brazing, and Soldering
Table of Contents
Section Features
Front Matter
Preface
Table of Contents
Interactive Graphs
Fundamentals of Welding
1. Energy Sources Used for Fusion Welding
2. Heat Flow in Fusion Welding
3. Fluid Flow Phenomena during Welding
4. Transfer of Heat and Mass to the Base Metal in Gas-Metal Arc Welding
5. Arc Physics of Gas-Tungsten Arc Welding
6. Power Sources
7. Fundamentals of Weld Solidification
8. Nature and Behavior of Fluxes Used for Welding
9. Shielding Gases
10. Solid-State Transformations in Weldments
11. Cracking Phenomena Associated with Welding
12. Characterization of Welds Fundamentals of Brazing and Soldering
13. Introduction to Brazing and Soldering
14. Fundamentals of Brazing
15. Fundamentals of Soldering Fundamentals of Solid-State Welding
16. Introduction to Solid-State Welding
17. Fundamentals of Metal and Metal-to-Ceramic Adhesion
18. Fundamentals of Friction Welding
19. Fundamentals of Diffusion Bonding
20. Fundamentals of Explosion Welding
21. Mechanical Properties of Soft-Interlayer Solid-State Welds Fusion Welding
22. Shielded Metal Arc Welding
23. Gas-Metal Arc Welding
24. Flux-Cored Arc Welding
25. Gas-Tungsten Arc Welding
26. Plasma Arc Welding
27. Carbon Arc Welding
28. Submerged Arc Welding
29. Stud Arc Welding
30. Capacitor Discharge Stud Welding
31. Plasma-MIG Welding
32. Resistance Spot Welding
33. Projection Welding
34. Resistance Seam Welding
35. Flash Welding
36. Upset Welding
37. High-Frequency Welding
38. Electron-Beam Welding
39. Laser-Beam Welding
40. Electroslag and Electrogas Welding
41. Oxyfuel Gas Welding
42. Thermite Welding, Solid-State Welding, Brazing, and Soldering Processes
43. High-Temperature Solid-State Welding
44. Low-Temperature Solid-State Welding
45. Explosion Welding
46. Forge Welding
47. Cold Welding
48. Coextrusion Welding
49. Roll Welding
50. Friction Welding
51. Radial Friction Welding
52. Friction Surfacing
53. Ultrasonic Welding Brazing Processes
54. Torch Brazing
55. Furnace Brazing
56. Induction Brazing
57. Dip Brazing
58. Resistance Brazing
59. Diffusion Brazing
60. Exothermic Brazing
61. Brazing with Clad Brazing Materials Soldering Processes
62. Iron Soldering
63. Torch Soldering
64. Furnace and Infrared Soldering
65. Dip Soldering
66. Resistance Soldering
67. Laser Soldering
68. Hot Gas Soldering
69. Induction Soldering
70. Wave Soldering
71. Vapor-Phase Soldering Material Requirements for Service Conditions
72. Material Requirements for Service Conditions Selection of Carbon and Low-Alloy Steels
73. Introduction to the Selection of Carbon and Low-Alloy Steels
74. Influence of Welding on Steel Weldment Soundness
75. Influence of Welding on Steel Weldment Properties Selection of Stainless Steels
76. Introduction to the Selection of Stainless Steels
77. Selection of Wrought Martensitic Stainless Steels
78. Selection of Wrought Ferritic Stainless Steels
79. Selection of Wrought Austenitic Stainless Steels
80. Selection of Wrought Duplex Stainless Steels
81. Selection of Wrought Precipitation-Hardening Stainless Steels
82. Selection of Cast Stainless Steels
83. Dissimilar Welds with Stainless Steel Selection of Nonferrous Low-Temperature Materials
84. Selection and Weldability of Conventional Titanium Alloys
85. Selection and Weldability of Advanced Titanium-Base Alloys
86. Selection and Weldability of Heat-Treatable Aluminum Alloys
87. Selection and Weldability of Non-Heat-Treatable Aluminum Alloys
88. Selection and Weldability of Dispersion-Strengthened Aluminum Alloys
90. Selection and Weldability of Aluminum Metal-Matrix Composites
90. Selection and Weldability of Aluminum Metal-Matrix Composites Selection of Nonferrous High-Temperature Materials
91. General Welding Characteristics of High-Temperature Alloys
92. Welding Metallurgy of Nonferrous High-Temperature Materials
93. Postweld Heat Treatment of Nonferrous High-Temperature Materials
94. Special Metallurgical Welding Considerations for Nickel and Cobalt Alloys and Superalloys
95. Special Metallurgical Welding Considerations for Refractory Metals
95. Special Metallurgical Welding Considerations for Refractory Metals Selection of Nonferrous Corrosion-Resistant Materials
96. Introduction to the Selection of Nonferrous Corrosion-Resistant Materials
97. Selection of Nickel, Nickel-Copper, Nickel-Chromium, and Nickel-Chromium-Iron Alloys
98. Selection of Nickel-Base Corrosion-Resistant Alloys Containing Molybdenum
99. Selection of Cobalt-, Titanium-, Zirconium-, and Tantalum-Base Corrosion-Resistant Alloys Weldability Testing
100. Weldability Testing Brazeability and Solderability of Engineering Materials
101. Brazeability and Solderability of Engineering Materials Practice Considerations for Arc Welding
102. Arc Welding of Carbon Steels
103. Welding of Low-Alloy Steels
104. Welding of Stainless Steels
105. Welding of Cast Irons
106. Welding of Aluminum Alloys
107. Welding of Nickel Alloys
108. Welding of Copper Alloys
109. Welding of Magnesium Alloys
110. Welding of Titanium Alloys
111. Welding of Zirconium Alloys
112. Hardfacing, Weld Cladding, and Dissimilar Metal Joining Practice Considerations for Resistance Welding and High-Energy-Beam Welding
113. Procedure Development and Process Considerations for Resistance Welding
114. Procedure Development and Practice Considerations for Electron-Beam Welding
115. Procedure Development and Practice Considerations for Laser-Beam Welding Procedure Development and Practice Considerations for Solid-State Welding
116. Procedure Development and Practice Considerations for Diffusion Welding
117. Procedure Development and Practice Considerations for Inertia and Direct-Drive Friction Welding
118. Procedure Development and Practice Considerations for Ultrasonic Welding Practice Considerations for Brazing and Soldering
120. Selection Criteria for Brazing and Soldering Consumables
121. Brazing of Cast Irons and Carbon Steels
122. Brazing of Stainless Steels
123. Brazing of Heat-Resistant Alloys, Low-Alloy Steels, and Tool Steels
124. Brazing of Copper, Copper Alloys, and Precious Metals
125. Brazing of Aluminum Alloys
126. Brazing of Refractory and Reactive Metals
127. Brazing of Ceramic and Ceramic-to-Metal Joints
128. Application of Clad Brazing Materials
129. General Soldering
130. Soldering in Electronic Applications Special Welding and Joining Topics
131. Introduction to Special Welding and Joining Topics
132. Thermal Spray Coatings
133. Underwater Welding
134. Welding for Cryogenic Service
135. Welding in Space and Low-Gravity Environments
136. Joining of Organic-Matrix Composites
137. Joining of Oxide-Dispersion-Strengthened Materials
138. Composite-to-Metal Joining
139. Welding of Plastics
140. Intelligent Automation for Joining Technology
141. Corrosion of Weldments
Joint Evaluation and Quality Control
142. Overview of Weld Discontinuities
143. Inspection of Welded Joints
144. Weld Procedure Qualification
145. Residual Stresses and Distortion
146. Repair Welding
148. Evaluation and Quality Control of Brazed Joints
149. Evaluation and Quality Control of Soldered Joints Modeling of Joining Processes
150. Numerical Aspects of Modeling Welds
151. Characterization and Modeling of the Heat Source
152. Validation Strategies for Heat-Affected Zone and Fluid-Flow Calculations Cutting Processes
154. Plasma Arc Cutting
155. Air-Carbon Arc Cutting
156. Mechanical Cutting for Welding Preparation
Safe Practices
157. Safe Practices
Glossary of Terms
Metric Conversion Guide
Abbreviations and Symbols
Index
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