Optical methods for solid mechanics: a full-field approach
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Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2012
|
Ausgabe: | 1. Aufl. |
Schriftenreihe: | Physics textbooks
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XVI, 433 S. zahlr. Ill. 240 mm x 170 mm |
ISBN: | 9783527411115 3527411119 |
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adam_text |
Titel: Optical methods for solid mechanics
Autor: Rastogi, Pramod K
Jahr: 2012
Contents
Preface XIII
List of Contributors XV
1 Basic Optics 1
Krishna Thyagarajan and Ajoy Ghatak
1.1 Introduction 1
1.2 Light as an Electromagnetic Wave I
1.2.1 Reflection and Refraction of Light Waves
at a Dielectric Interface 7
1.3 Rays of Light 9
1.4 Imaging through Optical Systems 3!
1.4.1 Thin Lens 13
1.4.2 Thick Lens 13
1.4.3 Principal Points of a Lens 14
1.5 Aberrations of Optical Systems 17
1.5.1 Monochromatic Aberrations 17
1.5.2 Spherical Aberration 17
1.5.3 Coma 18
1.5.4 Astigmatism and Curvature of Field 18
1.5.5 Distortion 18
1.6 Interference of Light 19
1.6.1 Young's Double-Slit Arrangement 19
1.7 Coherence 25
1.8 Diffraction of Light 27
1.8.1 Resolution of Optical Instruments 30
1.9 Anisotropic Media 33
1.10 [ones Calculus 35
1.11 Lasers 38
1.11.1 Principle 39
1.11.2 Coherence Properties of the Laser 41
1.12 Optical Fibers 42
1.13 Summary 44
VI I Contents
2 Electronic Image Sensing and Processing 47
Thomas Baechler
2.1 Introduction 47
2.2 Image Formation 49
2.2.1 Geometrical Optics and Imaging Concepts 50
2.2.2 Optical Distortion and Other Limiting Factors 54
2.3 Image Sensing: From Photons to Electrons 56
2.3.1 Image Formation Related to Image Sensing 58
2.3.2 Operating Modes of State-of-the-Art Electronic Image Sensors 62
2.3.3 Noise Sources in State-of-the-Art Electronic Image Sensors 64
2.3.4 From Electrons to Digital Image Data 67
2.4 Image Processing 70
2.4.1 Image Histograms 73
2.4.2 Linear Point Operations 73
2.4.3 Multi-image Operations for Noise Reduction 76
2.4.4 Morphological Image Operations 77
2.4.5 Introduction to Feature and Motion Detection 78
2.5 Conclusions 79
3 Phase Decoding and Reconstruction 83
Jan Burke
3.1 Introduction 83
3.2 Basic Concepts 85
3.2.1 Deriving a Generic Phase-Shifting Formula 93
3.2.2 Phase Shifting with Three Steps 94
3.2.3 General N-Step Method 96
3.2.4 Symmetrical N + 1 Step Formulae 97
3.2.5 Extended Averaging 99
3.2.6 Summary 300
3.3 Methods of Phase Shirting 303
3.3.1 Temporal Phase Shirting (TPS) 302
3.3.2 Spatial Phase Shifting (SPS) 107
3.3.3 Spatiotemporal Phase Shifting (STPS) 3 32
3.4 Designing and Analyzing Phase-Shift Methods with the
Complex-Polynomial Method 115
3.5 Sources and Removal of Errors 124
3.5.1 Phase-Shift Miscalibration and Calibration 324
3.5.2 Signal Nonlinearity and Harmonics 326
3.5.3 Vibrations 127
3.5.4 Random Noise 127
3.5.5 Digitization Noise 328
3.6 Phase Unwrapping 129
3.6.1 Spatial Phase Unwrapping 329
3.6.2 Temporal Phase Unwrapping 133
3.6.3 Multiwavelength Unwrapping Techniques 134
Contents VII
4 Experimental Stress Analysis - An Overview 141
Krishnamurthi Ramesh
4.1 Introduction 141
4.2 Concept of Stress and Strain 141
4.3 Stress-Strain Relations 146
4.4 Rudiments of a Tension Test 147
4.5 Principal Stress and Strain 148
4.6 Concept of Stress Concentration 151
4.7 Birth of Fracture Mechanics 153
4.8 Peculiarities of Experimental Approach 154
4.9 Information Directly Obtainable from Various Experimental
Techniques and Their Typical Applications 155
4.9.1 Photoelasticity 355
4.9.2 Holography 355
4.9.3 Grid Methods 356
4.9.4 Geometric Moire 157
4.9.5 Moire Interferometry 357
4.9.6 Speckle Interferometry 157
4.9.7 Digital Image Correlation 158
4.9.8 Thermoelastic Stress Analysis 159
4.9.9 Brittle Coating 359
4.9.10 Strain Gauge 359
4.9.11 Caustics 360
4.9.12 Coherent Gradient Sensor 161
4.10 Selection of an Experimental Technique 363
4.11 Case Studies 365
4.12 Experimental Study on Investigation of Random Failure of Chain
Plates 165
4.12.1 Possible Investigation Methodologies 367
4.12.1.1 Analysis of Combined Stress Fields 167
4.12.1.2 Decoupled Analysis of Assembly and Application Stress Fields 368
4.12.2 Analysis of Assembly Stress due to Interference Fit between Bush and
Inner Plate Using Transmission Photoelasticity 368
4.12.3 Analysis of a Chain Plate and Bush Assembly Using Reflection
Photoelasticity 370
4.12.4 Stress Concentration Factor due to Applied Load 171
4.13 Comprehensive Experimental Study on a MEMS Pressure
Sensor 372
4.13.1 Microscale Speckle Interferometry and Shearography 173
4.13.2 Deflection Measurement of the Pressure Sensor 175
4.14 Conclusions 378
Acknowledgements 179
VIII Contents
5 Digital Image Correlation 183
Franqois Hild and Stephane Roux
5.1 Introduction 183
5.2 Correlation Principles 185
5.2.1 Determination of the Optical Flow 185
5.2.2 Local DIC 187
5.2.3 Global DIC 188
5.2.4 Gray-Level Interpolation 189
5.2.5 Relaxation of the Gray Level Conservation 191
5.3 2-D Digital Image Correlation 199
5.3.1 Multiscale Analyses and Sequences of Pictures 199
5.3.2 Local Approach 200
5.3.2.1 FFT-Based DIC 200
5.3.2.2 Measurement Uncertainties 203
5.3.3 Global Approach 208
5.3.3.1 General Formulation 208
5.3.3.2 Q4-DIC: A Global Approach Using Q4 Elements 209
5.4 3-D Digital Image Correlation 216
5.4.1 Basic Principles 216
5 A.2 Camera Calibration 216
5.5 Digital Volume Correlation 220
5.5.1 3-D Extensions of 2-D Approaches 220
5.5.2 Resolution Analysis 221
5.6 Summary 225
5.7 Problems 225
5.7.1 Mean Strain Extractor 225
5.7.2 On the Use of a Global Approach When Analyzing Experiments on
Beams 226
5.7.3 Propagation of Uncertainties 227
5.7A Measuring Displacement Fields with a Global Approach in the
Presence of Cracks 227
5.7.5 DIC Coupled with Finite-Element Analyses 227
5.7.6 Application of Integrated DIC to a Brazilian Test 228
6 Rough Surface Interferometry 229
Kay Gastinger, Pierre Slangen, Pascal Picart, and Peter Somers
6.1 Introduction 229
6.2 Speckle 230
6.2.1 Speckle in Monochromatic Light 231
6.2.2 Speckle in Low-Coherent Light 232
6.3 Electronic Speckle Pattern Interferometry-ESPI 235
6.3.1 Introduction 235
6.3.2 General Principle 235
6.3.2.1 Interference Equation 236
6.3.3 Evaluation 237
Contents IX
6.3.3.1
6.3.3.2
6.3.4
6.3.4.1
6.3.5
6.3.5.1
6.3.6
6.3.6.1
6.3.6.2
6.4
6.4.1
6.4.2
6.4.2.1
6.4.3
6.4.4
6.4.4.1
6.4.4.2
6.4.5
6.4.6
6.4.6.1
6.4.6.2
6.5
6.5.1
6.5.2
6.5.3
6.5.4
6.5.5
6.5.6
6.5.6.1
6.5.6.2
6.5.6.3
6.6
6.6.1
6.6.2
6.6.3
6.6.3.1
6.6.3.2
6.6.4
6.6.4.1
6.6.4.2
6.6.4.3
6.6.4.4
6.6.4.5
6.7
Subtraction Mode 237
Time Averaged Method 237
Configuration 239
Sensitivity Vectors 240
Characteristics 240
Optimization of the Interference Signal 240
Applications 241
Compact Tension Notch Sample 242
Tensile Test Sample 244
Low-Coherence Speckle Interferometry-LCSI 246
Introduction 246
General Principle 247
Measurement Principle 248
Interferometer Setup 251
Evaluation 252
Full-Field OCT Mode 252
LCSI Mode 254
Characteristics 256
Applications 257
NDT of Interfacial Instabilities of Adhesive Bonded Joints 257
Membrane Deformation of a MEMS Pressure Sensor 259
Speckle Pattern Shearing Interferometry - Shearography 262
Introduction 262
General Principle 262
Evaluation 264
Configurations 266
Characteristics 268
Applications 269
Excitation or Loading of the Object 269
Static Applications 270
Dynamic Applications 274
Digital Holography 278
Introduction 278
General Principle 279
Evaluation 282
Discrete Fresnel Transform 282
Convolution Algorithm 282
Applications 284
2D Deformation Measurement Using a Two-Color Digital
Holographic Interferometer 284
Real-Time Three-Sensitivity Measurement 287
Vibration Analysis with Digital Fresnel Holography 292
Time-Averaging Mode 293
Stroboscopic Regime 295
Summary 298
X I Contents
7 Fringe Projection Profilometry 303
Jan Buytaert andjoris Dirckx
7.1 General Introduction 303
7.1.1 Non-Optical Topography 303
7.1.2 Optical Full-Field Profilometry 304
7.1.2.1 Coherence-Based Techniques 304
7.1.2.2 Triangulation-Based Techniques 304
7.2 Grid Projection Profilometry: the Basics 310
7.3 Fourier Transform Profilometry 311
7.3.1 Theory 311
7.3.2 Extensions 334
7.3.3 Simulation Example 316
7.4 Moire profilometry 316
7.4.1 Shadow Versus Projection Moire 316
7 A.2 Theory of Projection Moire 321
7.4.2.1 Basic Principles 321
7.4.2.2 Optical Geometric Interference 322
7.4.2.3 Grid Noise Removal 323
7.4.2.4 Digital Geometric Interference 325
7.4.2.5 Phase-Shifting Algorithms 326
7.4.2.6 Nonlinearity and Fringe Plane Distance 329
7A3 Practical Considerations 331
7.4.4 Practical Implementation 333
7AS Demonstration Measurements 337
7.5 Noncontiguous Surfaces 337
7.6 Summary 342
8 Thermoelastic Stress Analysis 345
Janice M. Dulieu-Barton
8.1 Introduction 345
8.2 The Thermoelastic Effect 345
8.3 Infrared Thermography 348
8.4 Obtaining Thermoelastic Measurements from an Infrared
System 352
8.5 Temperature Dependence of Thermoelastic Response 354
8.6 Derivation of the Thermoelastic Constant 354
8.7 Nonadiabatic Conditions 356
8.8 Paint Coatings 358
8.9 Temperature Dependence of the Material Elastic Properties 359
8.10 Progress, Applications, and Prospects 363
Acknowledgements 365
9 Photoelasticity 367
Eann A. Patterson
9.1 Introduction 367
Contents XI
9.2 Polariscope Theory and Design 369
9.3 Isoclinic and Isochromatic Fringes 373
9.4 Fractional Fringe Analysis Using Compensation Techniques 376
9.5 Digital Fringe Analysis 379
9.6 Material and Load Selection 383
9.7 Stress Analysis 386
9.8 Conclusions 390
Color Plates 393
References 405
Abbreviations and Notations 421
Index 427 |
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spelling | Optical methods for solid mechanics a full-field approach Ed. by Pramod Rastogi ... 1. Aufl. Weinheim Wiley-VCH 2012 XVI, 433 S. zahlr. Ill. 240 mm x 170 mm txt rdacontent n rdamedia nc rdacarrier Physics textbooks Optische Messung (DE-588)4121429-8 gnd rswk-swf Festkörpermechanik (DE-588)4129367-8 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Festkörpermechanik (DE-588)4129367-8 s Optische Messung (DE-588)4121429-8 s DE-604 Rastogi, Pramod K. 1951- Sonstige (DE-588)12143639X oth X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3965891&prov=M&dok_var=1&dok_ext=htm Inhaltstext HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025133741&sequence=000004&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Optical methods for solid mechanics a full-field approach Optische Messung (DE-588)4121429-8 gnd Festkörpermechanik (DE-588)4129367-8 gnd |
subject_GND | (DE-588)4121429-8 (DE-588)4129367-8 (DE-588)4123623-3 |
title | Optical methods for solid mechanics a full-field approach |
title_auth | Optical methods for solid mechanics a full-field approach |
title_exact_search | Optical methods for solid mechanics a full-field approach |
title_full | Optical methods for solid mechanics a full-field approach Ed. by Pramod Rastogi ... |
title_fullStr | Optical methods for solid mechanics a full-field approach Ed. by Pramod Rastogi ... |
title_full_unstemmed | Optical methods for solid mechanics a full-field approach Ed. by Pramod Rastogi ... |
title_short | Optical methods for solid mechanics |
title_sort | optical methods for solid mechanics a full field approach |
title_sub | a full-field approach |
topic | Optische Messung (DE-588)4121429-8 gnd Festkörpermechanik (DE-588)4129367-8 gnd |
topic_facet | Optische Messung Festkörpermechanik Lehrbuch |
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