
Industrial robotics technology

Industrial robotics technology
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1 HISTORICAL PERSPECTIVE AND TRENDS 1
1.1 INTRODUCTION 1
1.2 THE CONCEPT 2
1.3 DEVELOPMENT, EVOLUTION, AND USE OF INDUSTRIAL ROBOTS 5
1.4 ADVANTAGES OF USING ROBOTS 12
1.5 APPLICATIONS 14
1.5.1 Materials handling 15
1.5.2 Manufacturing processing operations 15
1.5.3 Assembly 19
1.6 EVOLUTION OF ROBOT SYSTEMS 22
1.7 ONGOING AND FUTURE DEVELOPMENTS 24
1.8 FURTHER READING 26
2 GENERAL CONCEPTS AND TERMS 27
2.1 ROBOT SYSTEMS 27
2.2 DESIGN AND IMPLEMENTATION 31
2.3 MANIPULATOR 34
2.4 JOINTS AND LINKS 38
2.5 PROGRAMMING AND CONTROL 42
2.6 ROBOT PERFORMANCE AND SPECIFICATION 44
2.7 FURTHER READING 46
3 MECHANICAL STRUCTURE 47
3.1 THE MANIPULATOR SYST 48
3.1.1 Mobile platform 48
3.1.2 Arm or primary axes 50
3.1.3 Wrist or secondary axes 51
3.2 TOOL CENTRE POINT (TCP) 51
3.3 DEGREES OF FREEDOM (DOF) OF A MANIPULATING ARM 54
3.4 JOINTS AND LINKS 59
3.5 SERIAL ARM 64
3.6 SERIAL ROBOT TYPES 65
3.6.1 Articulated robot 65
3.6.2 Cartesian robot 66
3.6.3 Cylindrical robot 67
3.6.4 SCARA robot 68
3.6.5 Polar robot 68
3.7 PARALLEL ROBOT 70
3.8 OTHER ROBOT TYPES 72
3.9 WRIST 73
3.10 FURTHER READING 77
4 INDUSTRIAL ROBOTS IN AUTOMATION 79
4.1 PRINCIPLES OF APPLYING ROBOTS 79
4.2 PERFORMANCE OF A ROBOT 81
4.3 SAFETY-RELATED FUNCTIONS 90
4.4 TRENDS 93
4.5 FURTHER READING 95
5 APPLICATIONS AND PROCESSING OPERATIONS 97
5.1 OPERATING PARAMETERS 98
5.2 SUPPORTING EQUIPMENT 101
5.2.1 Feeding devices 101
5.2.2 Grippers and tool changers 105
5.2.3 Manufacturing processing equipment 109
5.2.4 Sensors 111
5.3 APPLICATIONS 115
5.3.1 Materials handling 115
5.3.2 Welding 116
5.3.3 Dispensing 118
5.3.4 Machining and material removal 119
5.3.5 Assembly 120
5.3.6 Collaboration 121
5.4 FURTHER READING 124
6 ROBOT PROGRAMMING 127
6.1 INTRODUCTION 127
6.2 ROBOT PROGRAMMING FUNDAMENTALS 129
6.3 ONLINE AND OFFLINE PROGRAMMING 133
6.3.1 Online programming 134
6.3.2 Offline programming 136
6.4 ABSTRACTION LEVEL 138
6.4.1 Manipulator-level programming 141
6.4.2 Object-level programming 145
6.4.3 Task-level or objective level programming 148
6.5 SIMULATION TOOLS 149
6.5.1 Simulation in robotics 150
6.6 FURTHER READING 153
7 FLEXIBLE AND CONFIGURABLE SYSTEMS 155
7.1 THE CONCEPT OF FLEXIBILITY 156
7.2 ROBOT FLEXIBILITY 159
7.3 RECONFIGURING ROBOT SYSTEMS AND MANUFACTURING SYSTEMS 163
7.3.1 Scalability 164
7.3.2 Convertibility 166
7.3.3 Diagnosability 166
7.3.4 Customisation 167
7.3.5 Modularity 167
7.3.6 Integrability 167
7.3.7 Challenges and trends 167
7.4 LEVEL OF AUTOMATION 169
7.5 FLEXIBILITY AND OPERATING PARAMETERS FOR A ROBOT CELL 170
7.6 FURTHER READING 172
8 INVESTMENT CONSIDERATIONS 173
8.1 EFFECTS OF USING ROBOTS 174
8.1.1 Product 175
8.1.2 Production 175
8.1.3 Quality 176
8.1.4 Employees 176
8.1.5 Sustainability 177
8.1.6 Costs and finance 177
8.1.7 Other considerations 181
8.2 ANALYSING THE INVESTMENT 181
8.3 FURTHER READING 183
9 IMPLEMENTING ROBOT SYSTEMS 185
9.1 PRELIMINARIES IN SETTING UP A ROBOT AUTOMATION PROJECT 186
9.2 INITIAL OBJECTIVES AND PRIORITIES 189
9.3 IMPLEMENTING ROBOT SYSTEMS 191
9.3.1 Conceptual design and specification 192
9.3.2 Detailed design, configuration, and build 203
9.3.3 Installation and commissioning 204
9.3.4 Operation, maintenance, and reconfigurations 204
9.4 FURTHER READING 205
10 ROBOT AUTOMATION STRATEGY 207
10.1 FURTHER READING 213
11 FUTURE OUTLOOK 215
11.1 TRENDS – IMPLEMENTATION AND USE OF INDUSTRIAL ROBOTS 216
11.2 ROBOT AUTOMATION IN THE INDUSTRY 219
11.3 CORE CHALLENGES 220
11.3.1 Collaboration 222
11.3.2 Easier to implement and use 222
11.3.3 The lot-size-one challenge 223
11.3.4 Robots and AI 224
11.3.5 Simulation, digital twins, and VR/AR 224
11.4 R&D INITIATIVES 225
11.5 FURTHER READING 226
Information
Språk:
SvenskaISBN:
9789144097275Utgivningsår:
2023Artikelnummer:
38340-01Upplaga:
FörstaSidantal:
238Information
Språk:
SvenskaISBN:
9789144183398Utgivningsår:
2023Artikelnummer:
38340-SB01Upplaga:
Första