Photoelasticity of glass:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin u.a.
Springer
1993
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 229 - 247 |
Beschreibung: | XIII, 255 S. Ill., graph. Darst. |
ISBN: | 3540548416 0387548416 |
Internformat
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245 | 1 | 0 | |a Photoelasticity of glass |c H. Aben ; C. Guillemet |
264 | 1 | |a Berlin u.a. |b Springer |c 1993 | |
300 | |a XIII, 255 S. |b Ill., graph. Darst. | ||
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500 | |a Literaturverz. S. 229 - 247 | ||
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650 | 4 | |a Photoelasticity | |
650 | 4 | |a Residual stresses |x Measurement | |
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Datensatz im Suchindex
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adam_text | H. ABEN, C. GUIUEMET PHOTOELASTICITY OF GLASS WITH 218 FIGURES
SPRINGER-VERLAG BERLIN HEIDELBERG NEW YORK LONDON PARIS TOKYO HONG KONG
BARCELONA BUDAPEST CONTENTS PREFACE V PART ONE THE BASICS OF
PHOTOELASTICITY AND GLASS 1 1 BASIC ELASTICITY 3 1.1 ELASTICITY 3 1.2
FORCE AND STRESS 3 1.3 PLANE STRESS 5 1.4 EQUATIONS OF EQUILIBRIUM 7 1.5
BOUNDARY CONDITIONS 9 1.6 STRAIN 10 1.7 RELATIONS BETWEEN STRESSES AND
STRAHLS 11 1.8 PLANE STRAIN 13 1.9 EQUATIONS OF COMPATIBILITY 14 1.10
STRESS FUNCTION 16 2 RESIDUAL STRESSES IN GLASS 18 2.1 INTRODUCTION 18
2.2 DEPENDENCE OF THE MECHANICAL STRENGTH ON RESIDUAL STRESSES 18 2.3
STRESSES DUE TO INDENTATIONS 21 2.4 RESIDUAL STRESSES DUE TO THERMAL
ANNEALING OR TEMPENNG 25 2.4.1 THE FIRST APPROACHES 26 2.4.2 THE
VISCOELASTIC THEORY 28 2.4.3 THE STRUCTURAL THEORY 31 2.4.4 MEMBRANE
STRESSES AND FORM STRESSES 33 2.4.5 STRESS REDISTRIBUTION BY CUTTING 34
2.5 STRESSES DUE TO CHEMICAL TEMPERING 35 2.5.1 STRESS BUILDUP 35 2.5.2
STRENGTHENING OF GLASS 41 2.6 STRESSES CREATED IN GLASS BY RADIATIONS 42
2.6.1 CORPUSCULAR RADIATION 42 2.6.2 ELECTROMAGNETIC RADIATION 44
THERMAL EFFECTS 45 COLOR CENTERS 45 2.7 STRESSES DUE TO HETEROGENEITIES
46 2.8 STRESSES IN COMPOSITE GLASS ARTICLES 46 ) X CONTENTS 2.8.1
STRESSES IN GLAZES AND ENAMELS 47 2.8.2 STRESSES IN OPTICAL FIBERS 47
2.8.3 STRESSES IN GLASS-METAL AND GLASS-CERAMIC SEALS . . 47 2.8.4
STRESSES DUE TO INCLUSIONS 48 3 BASIC PHOTOELASTICITY 51 3.1 POLARIZED
LIGHT 51 3.1.1 NATURE OF LIGHT 51 3.1.2 NATURAL AND POLARIZED LIGHT 51
3.1.3 DIFFERENT DESCRIPTIONS OF POLARIZED LIGHT 54 3.2 ARTIFICIAL DOUBLE
REFRACTION 55 3.3 STRESS-OPTIC LAW 56 3.4 THE PLANE POLARISCOPE 57 3.5
THE CIRCULAR POLARISCOPE 58 3.6 USE OF DOUBLE-EXPOSURE PHOTOGRAPHY FOR
THE ELIMINATION OF THE ISOCLINICS . . 60 3.7 CONSTRUCTION OF
POLARISCOPES 61 3.8 MEASUREMENT OF OPTICAL RETARDATION 63 3.8.1 COLOR
MATCHING 63 3.8.2 POLARISCOPE WITH A TINT PLATE 63 3.8.3 THE BABINET AND
BABINET-SOLEIL COMPENSATORS 65 3.8.4 SENARMONT METHOD 66 3.8.5 THE
AZIMUTH METHOD 67 4 TWO-DIMENSIONAL PHOTOELASTICITY 69 4.1 GENERAL 69
4.2 STRESS TRAJECTORIES 69 4.3 SEPARATION OF PRINCIPAL STRESSES 71 4.3.1
OBLIQUE INCIDENCE METHOD 71 4.3.2 SHEAR DIFFERENCE METHOD 72 4.3.3
NUMERICAL SOLUTION OF THE COMPATIBILITY EQUATION 73 4.3.4 METHODS BASED
ON HOOKE S LAW 73 4.4 SUPERPOSITION OF STATES OF STRESS 73 4.5
DETERMINATION OF THE PHOTOELASTIC CONSTANT 75 5 THE SCATTERED LIGHT
METHOD 79 5.1 INTRODUCTION 79 5.2 SCATTERING OF LIGHT 79 5.3 THE
SCATTERED LIGHT METHOD WITH POLARIZED INCIDENT LIGHT 81 5.4 THE
SCATTERED LIGHT METHOD WITH UNPOLARIZED INCIDENT LIGHT 83 5.5 USING
INTERFERENCE OF COHERENT SCATTERED LIGHT BEAMS 85 6 INTEGRATED
PHOTOELASTICITY 86 6.1 INTRODUCTION 86 6.2 PRINCIPLE OF INTEGRATED
PHOTOELASTICITY 86 6.3 BASIC EQUATIONS 87 6.4 THEORY OF CHARACTERISTIC
DIRECTIONS 90 6.5 SYMMETRIE PHOTOELASTIC MEDIA 92 CONTENTS XI 6.6 THE
CASE OF CONSTANT PRINCIPAL STRESS AXES 93 6.7 THE CASE OF WEAK
BIREFRINGENCE 94 6.8 INTEGRATED PHOTOELASTICITY AS OPTICAL TOMOGRAPHY OF
THE STRESS FIELD . . . . 96 6.9 INVESTIGATION OF THE GENERAL
THREE-DIMENSIONAL STATE OF STRESS 97 6.10 AXISYMMETRIC STATE OF STRESS
DUE TO EXTERNAL LOADS 99 7 PHOTOELASTIC PROPERTIES OF GLASS 102 7.1
INTRODUCTION 102 7.2 DISCOVERY OF THE PHOTOELASTIC EFFECT IN GLASS 102
7.3 INFLUENCE OF THE GLASS COMPOSITION 103 7.4 THEORIES OF THE
PHOTOELASTIC EFFECT 106 7.5 INFLUENCE OF THE TEMPERATURE AND OF THE
THERMAL HISTORY 110 7.6 DEPENDENCE OF THE PHOTOELASTIC CONSTANT ON
WAVELENGTH 114 7.7 ANOMALOUS BIREFRINGENCE 115 PART TWO STRESS ANALYSIS
IN FIAT GLASS 121 8 THICKNESS STRESSES 123 8.1 DIFFERENT KINDS OF
THICKNESS STRESSES 123 8.2 MEASUREMENT OF THICKNESS STRESSES 126 8.2.1
USING THE BENDING OF THE LIGHT RAYS 126 8.2.2 CONVENTIONAL
PHOTOELASTICITY 126 9 MEMBRANE STRESSES 130 9.1 INTRODUCTION 130 9.2
UNIAXIAL MEMBRANE STRESSES 130 9.2.1 EDGE STRESSES 130 9.2.2 STRESSES
ACROSS A RIBBON 131 9.3 BIDIMENSIONAL MEMBRANE STRESSES 134 10
DETERMINATION OF THE TOTAL STRESSES 139 10.1 INTRODUCTION 139 10.2 THE
MEASUREMENT OF SURFACE STRESSES 139 10.2.1 DIFFERENTIAL REFRACTOMETRY
139 10.2.2 THE MIRAGE METHODS 141 OBSERVATION OF THE GUIDED WAVES
CLOSE TO THE SURFACE 141 THE CASE OF FIAT SAMPLES 142 THE CASE OF CURVED
SAMPLES 145 THE CASE OF STRESS GRADIENT NEAR THE SURFACE 145 OBSERVATION
OF THE GUIDED WAVES AT INFINITY 146 THEORY OF THE DIFFERENTIAL
REFRACTOMETRY WITH GUIDED WAVES . . . 146 LINEAR INDEX PROFILE 148
DETERMINATION OF STRESSES 149 AN EXAMPLE 150 ALTERNATIVE NUMERICAL
METHODS 152 CURVED SURFACE 153 THERMALLY TEMPERED GLASS 154 XII CONTENTS
10.3 MEASUREMENT OF TOTAL RESIDUAL STRESSES 154 10.3.1 THE SCATTERED
LIGHT METHOD 154 SPATIAL MODULATION METHOD 154 PHASE MODULATION METHOD
156 10.3.2 MAGNETOPHOTOELASTICITY 158 PART THREE STRESSES IN GLASS
ARTICLES OF COMPLICATED SHAPE 163 11 AXISYMMETRIC GLASS ARTICLES 165
11.1 GENERAL CASE OF AXISYMMETRIC RESIDUAL STRESS DISTRIBUTION 165
11.1.1 PECUHARITIES OF THE DETERMINATION OF THE RESIDUAL STRESS 165
11.1.2 DETERMINATION OF THE AXIAL AND SHEAR STRESS DISTRIBUTIONS 165
11.1.3 ADDITIONAL TOMOGRAPHIE MEASUREMENTS 167 11.2 APPLICATION OF THE
EQUILIBRIUM AND BOUNDARY CONDITIONS 168 11.3 STRESSES ON THE EXTERNA!
SURFACE 170 11.4 AVERAGE VALUE OF THE CIRCUMFERENTIAL STRESS 171 11.5
STRESSES IN LONG CYLINDERS 172 11.6 SPHERICAL SYMMETRY 176 11.6.1 STRESS
DISTRIBUTION IN SPHERES 176 11.6.2 QUENCHING STRESSES AROUND A SPHERICAL
INCLUSION 178 11.7 BENDING OF LIGHT RAYS 180 11.8 DETERMINATION OF THE
COMPONENTS OF THE DIELECTRIC TENSOR 182 11.9 OPTIMIZATION OF THE NUMBER
OF TERMS IN STRESS POLYNOMIALS 185 11.10 EXPERIMENTAL TECHNIQUE 186
11.10.1 POLARISCOPES 186 11.10.2 IMMERSION TECHNIQUE 186 11.10.3 THE
CASE OF MISMATCHING IMMERSION 189 11.11 EXAMPLES 191 11.11.1 QUENCHED
LONG CYLINDER * * * 191 11.11.2 AN ARTICLE OF OPTICAL GLASS 193 11.11.3
HIGH VOLTAGE INSULATOR 194 11.11.4 CLOSED TUBE 195 11.11.5 TWO BONDED
TUBES 195 12 CONTAINERS AND OTHER THIN-WALLED GLASSWARE 19 8 12.1
INTRODUCTION 198 12.2 TRADITIONAL METHODS . . 199 12.3 DETERMINATION OF
STRESS IN CYLINDRICAL PART OF THE CONTAINER 200 12.4 AXIAL STRESS IN AN
ARBITRARY SECTION 203 12.5 DETERMINATION OF THE STRESSES DUE TO THE
INTERNAL PRESSURE 204 12.6 SANDWICH GLASSWARE 205 12.7 EXAMPLES 206
12.7.1 A CHAMPAGNE BOTTLE 206 12.7.2 A BEER BOTTLE 207 12.7.3 TUMBLERNL
209 12.7.4 TUMBLERN2 210 12.7.5 SALADBOWL 212 CONTENTS XIII 12.7.6
ELECTRIC LAMP 213 12.7.7 AMPULE OF A FIRE EXTINGUISHER SYSTEM 215 13
OPTICAL FIBERS AND FIBER PREFORMS 216 13.1 INTRODUCTION 216 13.2
AXISYMMETRIC FIBERS AND FIBER PREFORMS 217 13.2.1 REFRACTIVE INDEX
PROFILES 217 13.2.2 DETERMINATION OF THE STRESS DISTRIBUTION 217 13.2.3
APPLICATION OF THE METHOD OF OBLIQUE INCIDENCE 218 13.2.4 EXAMPLES . 220
13.3 FIBER PREFORMS OF ARBITRARY CROSS SECTION 221 13.3.1 DETERMINATION
OF THE AXIAL STRESS DISTRIBUTION 222 13.3.2 DETERMINATION OF OTHER
STRESS COMPONENTS 223 13.3.3 INTERNAL ROTATION OF THE BIREFRINGENCE AXES
IN POLAIIZATION-HOLDING FIBERS 224 13.3.4 EXAMPLES 225 BIBLIOGRAPHY 229
AUTHOR INDEX 249 SUBJECT INDEX 253
|
any_adam_object | 1 |
author | Aben, Hillar Guillemet, Claude |
author_facet | Aben, Hillar Guillemet, Claude |
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dewey-search | 620.1/4495 |
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discipline | Physik Werkstoffwissenschaften Werkstoffwissenschaften / Fertigungstechnik |
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id | DE-604.BV008168113 |
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indexdate | 2024-07-09T17:15:40Z |
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language | English |
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physical | XIII, 255 S. Ill., graph. Darst. |
publishDate | 1993 |
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spelling | Aben, Hillar Verfasser aut Photoelasticity of glass H. Aben ; C. Guillemet Berlin u.a. Springer 1993 XIII, 255 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturverz. S. 229 - 247 Glass Mechanical properties Photoelasticity Residual stresses Measurement Photoelastizität (DE-588)4045883-0 gnd rswk-swf Spannungsanalyse (DE-588)4055995-6 gnd rswk-swf Glas (DE-588)4021142-3 gnd rswk-swf Glas (DE-588)4021142-3 s Spannungsanalyse (DE-588)4055995-6 s Photoelastizität (DE-588)4045883-0 s DE-604 Guillemet, Claude Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005389556&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Aben, Hillar Guillemet, Claude Photoelasticity of glass Glass Mechanical properties Photoelasticity Residual stresses Measurement Photoelastizität (DE-588)4045883-0 gnd Spannungsanalyse (DE-588)4055995-6 gnd Glas (DE-588)4021142-3 gnd |
subject_GND | (DE-588)4045883-0 (DE-588)4055995-6 (DE-588)4021142-3 |
title | Photoelasticity of glass |
title_auth | Photoelasticity of glass |
title_exact_search | Photoelasticity of glass |
title_full | Photoelasticity of glass H. Aben ; C. Guillemet |
title_fullStr | Photoelasticity of glass H. Aben ; C. Guillemet |
title_full_unstemmed | Photoelasticity of glass H. Aben ; C. Guillemet |
title_short | Photoelasticity of glass |
title_sort | photoelasticity of glass |
topic | Glass Mechanical properties Photoelasticity Residual stresses Measurement Photoelastizität (DE-588)4045883-0 gnd Spannungsanalyse (DE-588)4055995-6 gnd Glas (DE-588)4021142-3 gnd |
topic_facet | Glass Mechanical properties Photoelasticity Residual stresses Measurement Photoelastizität Spannungsanalyse Glas |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005389556&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT abenhillar photoelasticityofglass AT guillemetclaude photoelasticityofglass |