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Solid State Welding(固相焊接技术)
  • 书号:9787030533722
    作者:李亚文等
  • 外文书名:
  • 装帧:平装
    开本:B5
  • 页数:136
    字数:172
    语种:en
  • 出版社:科学出版社
    出版时间:2017-06-27
  • 所属分类:
  • 定价: ¥80.00元
    售价: ¥63.20元
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目录

  • Contents
    Preface Chapter 1 Introduction to Solid State Welding 1
    1.1 Terminology 1
    1.2 Welding Technology 2
    1.3 Classification of Welding 4
    1.4 Fusion Welding 6
    1.4.1 Gas Welding 6
    1.4.2 Arc Welding 6
    1.4.3 High-Energy Beam Welding 6
    1.5 Heat Source 7
    1.6 Solid State Welding 7
    1.6.1 Classification of Solid State Welding 8
    1.6.2 Advantages of Solid State Welding 9
    1.6.3 Importance of Interface in Solid State Welding 9
    Questions 10
    References 10
    Chapter 2 Fundamentals of Metal Adhesion and Cohesion 11
    2.1 Terminology 11
    2.2 Introduction 12
    2.3 Surface Energy 12
    2.4 Fracture Energy (Cohesion Energy) 12
    2.5 Grain Boundary Energy 13
    2.6 Interface Energy 14
    2.7 Properties Influencing Adhesion 14
    Questions 15
    References 15
    Chapter 3 Cold Welding 16
    3.1 Terminology 16
    3.2 Introduction 17
    3.3 Bonding Mechanism 18
    3.4 Variants of Cold Welding 20
    3.4.1 Cold Pressure Lap Welding 20
    3.4.2 Cold Pressure Butt Welding 21
    3.5 Cold Welding in Drawing 23
    3.6 Cold Welding in Extrusion 24
    3.7 Cold Welding in Rolling 25
    Questions 26
    References 26
    Chapter 4 Rotary Friction Welding 27
    4.1 Terminology 27
    4.2 Classification of Friction Welding 28
    4.3 Principle of Rotary Friction Welding 28
    4.4 Process Parameters 29
    4.4.1 The Process of Continuous-Drive Friction Welding 29
    4.4.2 The Process of Inertia Friction Welding (IFW) 31
    4.5 Heat Generation during Rotary Friction Welding 32
    4.6 Important Factors 34
    4.7 Advantages and Limitations 34
    4.8 Applications 35
    Questions 35
    References 36
    Chapter 5 Linear Friction Welding 37
    5.1 Terminology 37
    5.2 Principle of Linear Friction Welding 39
    5.3 Phases of Linear Friction Welding 40
    5.3.1 PhaseⅠ: Initial Phase 40
    5.3.2 PhaseⅡ: Transition Phase 40
    5.3.3 Phase Ⅲ: Equilibrium Phase 41
    5.3.4 Phase Ⅳ: Deceleration Phase 41
    5.4 Advantages and Limitations of Linear Friction Welding 41
    5.5 History and Applications of Linear Friction Welding 42
    5.6 Microstructure and Properties of LFW Ti-6Al-4V 44
    5.6.1 Microstructure 44
    5.6.2 Mechanical Properties 46
    5.7 Modeling of the Linear Friction Welding Process 47
    5.7.1 Numerical Model 47
    5.7.2 Typical Temperature and Axial Shortening Evolution 49
    5.8 Heat Input 51
    Questions 52
    References 53
    Chapter 6 Friction Stir Welding 54
    6.1 Terminology 54
    6.2 Principle of Friction Stir Welding 55
    6.3 Benefits of Friction Stir Welding 57
    6.4 Industrial Applications 58
    6.5 Joint Microstructure 59
    6.6 Joint Properties 60
    6.7 FSW Tool Design 61
    6.7.1 Tool Materials 61
    6.7.2 Tool Geometry 61
    6.7.3 Tool Wear and Failure 62
    Questions 63
    References 63
    Chapter 7 Diffusion Bonding 65
    7.1 Terminology 65
    7.2 Introduction 67
    7.3 Welding Mechanism 67
    7.4 Important Factors Affecting Bonding 68
    7.4.1 Surface Roughness 68
    7.4.2 Surface Oxides 69
    7.5 Effect of Interlayers 69
    7.6 Diffusion Bonding of Stainless Steel with Titanium Alloy 70
    7.7 Transient Liquid Phase Diffusion Bonding 70
    Questions 72
    References 72
    Chapter 8 Explosion Welding 73
    8.1 Terminology 73
    8.2 Introduction 74
    8.3 The Process of Explosion Welding 74
    8.4 Advantages and Disadvantages of Explosion Welding 75
    8.4.1 Advantages 75
    8.4.2 Disadvantages 75
    8.5 Process Parameters 75
    8.6 Examples 76
    8.7 Formation Mechanism of Wavy Interface 77
    Questions 78
    References 78
    Chapter 9 Ultrasonic Welding 79
    9.1 Terminology 79
    9.2 Introduction 79
    9.3 The Process of USW 79
    9.4 Process Parameters 81
    9.5 Advantages and Disadvantages of USW 82
    9.5.1 Advantages 82
    9.5.2 Disadvantages 83
    9.6 Microstructure and Mechanical Properties 83
    Questions 84
    References 84
    Chapter 10 Cold Spraying 86
    10.1 Terminology 86
    10.2 Introduction 88
    10.2.1 Surface Engineering 88
    10.2.2 Thermal Spraying 89
    10.3 Cold Spray Process 89
    10.3.1 Principle of Cold Spraying 89
    10.3.2 Main Advantages and Disadvantages of CS 90
    10.4 Bonding Mechanisms in Cold Spraying 91
    10.4.1 Bonding Hypothesis 91
    10.4.2 Influencing Factors of Critical Velocity 92
    10.5 Processing Parameters 92
    10.5.1 Driving Gas 93
    10.5.2 Nozzle Design 93
    10.5.3 Powder Property 94
    10.6 Applications 94
    10.6.1 Protective Coatings 94
    10.6.2 Functional Coatings 96
    10.6.3 Repair and Restoration 96
    10.6.4 Additive Manufacturing/Spray Forming 97
    Questions 97
    References 97
    Chapter 11 Laser Impact Welding 99
    11.1 Terminology 99
    11.2 The Process of Laser Impact Welding 99
    11.3 Process Parameters 100
    Questions 101
    References 101
    Chapter 12 Magnetic Pulse Welding 103
    12.1 Terminology 103
    12.2 The Process of Magnetic Pulse Welding 103
    12.3 Process Parameters 104
    12.3.1 Impact Energy Level 104
    12.3.2 Standoff Distance 104
    12.3.3 Coil Geometry 105
    12.3.4 Overlap Width 105
    Questions 105
    References 106
    Chapter 13 Soldering and Brazing 107
    13.1 Terminology 107
    13.2 Introduction 109
    13.3 Wettability and Solderability 109
    13.4 Process Characteristics and Parameters 110
    13.4.1 Important Features 110
    13.4.2 Process Parameters 111
    13.5 Advantages and Limitations 113
    13.6 Techniques Available 113
    13.6.1 Torch Brazing and Soldering 113
    13.6.2 Furnace Brazing and Soldering 113
    13.6.3 Induction Brazing and Soldering 114
    13.6.4 Dip Brazing and Soldering 114
    13.6.5 Vacuum Brazing 115
    13.6.6 Resistance Soldering 115
    13.6.7 Hot Gas Soldering 115
    13.7 Joint Designs 115 Questions 116
    References 117
    Chapter 14 Solid State Variants of Resistance Welding 118
    14.1 Terminology 118
    14.2 Introduction 118
    14.3 Flash Welding 119
    14.3.1 History and Applications 119
    14.3.2 Advantages and Limits 120
    14.3.3 Process Parameters 121
    14.4 Upset Welding 121
    14.4.1 Welding Cycle 122
    14.4.2 Weldable Metals and Applications 122
    14.5 Projection Welding 123
    14.5.1 Process Parameters 123
    14.5.2 Projection Design 124
    14.5.3 Advantages and Limits 124
    Questions 125
    References 125
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