Fracture dynamics in silicate glasses:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | German |
Veröffentlicht: |
2011
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Schlagworte: | |
Online-Zugang: | Volltext Inhaltsverzeichnis |
Beschreibung: | Zsfassung in dt. und engl. Sprache |
Beschreibung: | II, 229 S. Ill., graph. Darst. CD-ROM (12 cm) |
Internformat
MARC
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245 | 1 | 0 | |a Fracture dynamics in silicate glasses |c von Tobias Dürig |
246 | 1 | 3 | |a Bruchdynamiken in Silikatgläsern |
264 | 1 | |c 2011 | |
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336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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500 | |a Zsfassung in dt. und engl. Sprache | ||
502 | |a Würzburg, Univ., Diss., 2012 | ||
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IMAGE 1
CONTENTS
I. MOTIVATION AND OBJECTIVES 7
II. STATE O F RESEARCH AND RESULTS O F OWN SPADEWORKS 13
1. FUNDAMENTALS O F FRACTURE MECHANICS 15
1.1. ELASTICITY THEORY 15
1.2. GENERAL PROPERTIES OF SILICATE MATERIALS 16
1.3. NOTCH STRESS CONCEPT 17
1.3.1. CRACK EDGE RESULTS 17
1.3.2. NORMAL STRESS LAW 19
1.3.3. INVESTIGATION OF THE FAR-FIELD 20
1.3.4. MODES OF CRACK OPENING 20
1.3.5. APPROXIMATE NEAR-FIELD SOLUTIONS 21
1.3.6. RESULTING MODEL OF CRACK PROPAGATION 23
1.4. ENERGY CONSIDERATIONS: GRIFFITH THEORY OF BRITTLE FRACTURE 24
1.5. FRACTURE CRITERION LIMITATIONS AND NEW APPROACH 25
2. BASICS O F SHOCK WAVES 2 8
3. RESULTS O F OWN PRELIMINARY INVESTIGATIONS 3 1
3.1. PHENOMENOLOGY OF CRACKS AND FRACTURE DYNAMICS 31
3.2. CRACK INSTABILITIES AND BRANCHING 32
3.3. CONCEPT OF DIRECTED AND FLUCTUATING STRESS 34
III. EXPERIMENTAL SETUP, MEASUREMENT AND EVALUATION METHODS 3 5
1. THE HAMMER IMPACT EXPERIMENT (HIE) 37
1.1. IMPACT CONFIGURATION 37
1.1.1. BEARINGS 37
1.1.2. HAMMER 37
1.2. VISUALIZATION AND IMAGING SYSTEMS 38
1.2.1. CRANZ-SCHARDIN HIGH SPEED CAMERA SYSTEM 38
1.2.2. TRIGGERING 39
1.2.3. IR-VIDEO CAMERA 40
1.2.4. MODIFIED SETUP FOR PHOTOELASTIC INVESTIGATIONS 40
1.2.5. SUPPLEMENTARY HIGH SPEED CAMERA SYSTEMS 41
1.2.6. ADDITIONAL PHOTO CAMERAS 41
1.3. SENSORS AND DATA ACQUISITION SYSTEMS 41
1.3.1. DISPLACEMENT TRANSDUCER 41
1.3.2. FORCE TRANSDUCERS 42
1
HTTP://D-NB.INFO/1029568081
IMAGE 2
CONTENTS
1.3.3. ELECTROMAGNETIC SIGNAL 42
1.3.4. COORDINATED DATA ACQUISITION SYSTEM (CODAS) 42
2. TARGET PREPARATION 4 4
2.1. RAW MATERIALS 44
2.2. SETUP FOR TARGET PREPARATION 44
2.3. PREPARATION PROCEDURES 45
3. EXAMINED BOUNDARY CONDITIONS 4 7
4. SOME BASICS O F PARTICLE ANALYSIS 4 9
4.1. GENERAL REMARKS 49
4.2. THE HEYWOOD FACTOR 49
4.3. IMAGE PARTICLE ANALYSIS (IPA) 50
5. DEVICES AND METHODS USED FOR FRAGMENT ANALYSIS 5 1
5.1. MICROSCOPES 51
5.2. PLANIMETRICAL METHODS 51
5.2.1. PLANIMETRICAL EPIHALSY (TEH) 51
5.2.1.1. PRINCIPLE AND SETUP OF TEH 51
5.2.1.2. ELECTROCHEMICAL BACKGROUND AND CALIBRATION 53
5.2.2. MEASUREMENTS BY NITROGEN ADSORPTION (BET) 53
5.2.3. PLANIMETRY BY CAD MODELING (CAD) 54
5.2.4. PHOTOGRAPHIC PLANIMETRY (OPT) 55
5.2.5. OPTICAL AREA PROJECTION CONCEPT (OPC) 55
6. IMPLEMENTED MULTIVARIATE STATISTICAL METHODS 5 8
IV. RESULTS O F SUPPLEMENTARY MEASUREMENTS 6 1
1. RESULTS O F EDX-ANALYSES 6 3
2. IMPACT BEHAVIOR O F THE HAMMER 6 4
V. DISCUSSION O F HIE RESULTS 6 7
1. CLASSIFICATION O F CRACKS 6 9
1.1. MAIN CLASSES AND SUBCLASSES OF CRACKS 69
1.2. PHENOMENOLOGICAL DESCRIPTION OF DAMAGE CRACK TYPES 70
1.3. CHARACTERISTICS OF PRIMARY CRACK TYPES AND SUBTYPES 70
1.3.1. W-CRACKS 71
1.3.2. A-CRACKS 71
1.3.3. CENTRICAL CRACKS 71
1.4. LIST OF SECONDARY CRACK TYPES 72
1.5. LIST OF SPECIAL CRACK TYPES 73
2. FORCE SIGNAL ANALYSIS 7 4
2.1. GENERAL ASPECTS ABOUT FORCE SIGNALS 74
2.2. INFLUENCES ON FORCE SIGNALS 76
2.3. THE DAISY CHAIN DISCRIMINANT ANALYSIS CONCEPT 77
2
IMAGE 3
CONTENTS
3. INFLUENCES ON CRACK PROPAGATION PATHS 8 0
3.1. CRACK-MAPPING 80
3.2. GENERAL MATERIAL-SPECIFIC CORRELATIONS OF CRACK PATHS 81
3.3. EFFECTS ON CRACK PATTERNS IN FG 84
3.4. SITUATION IN T5 AND ITS EFFECTS ON CRACK PATTERNS 86
3.5. SITUATION IN T10 TARGETS 88
3.6. SITUATION IN TK TARGETS 89
3.7. SITUATION IN AS TARGETS 90
3.8. SITUATION IN RX TARGETS 91
4. LINEAR FSED MODELS 9 3
5. FRAGMENT ANALYSIS 95
5.1. FINDINGS OF MORPHOLOGICAL INVESTIGATIONS ON FRACTURE SURFACES 95
5.1.1. MORPHOLOGY OF DAMAGE CRACKS 95
5.1.2. MORPHOLOGY OF NORMAL CRACKS 100
5.1.3. MATERIAL-SPECIFIC FEATURES OF FRACTURE MIRRORS 100
5.1.4. BACKTRACKING OF PARTICLES 100
5.2. RESULTS OF SIEVING ANALYSES 102
5.2.1. GRAIN SIZE DISTRIBUTION AND IMPACT VELOCITY 102
5.2.2. GRAIN SIZE DISTRIBUTION AND HAMMER GEOMETRY 103
5.2.3. MATERIAL-SPECIFIC EFFECTS ON GRAIN SIZE DISTRIBUTION 104
5.3. FRACTURE AREA QUANTIFICATION MODEL 105
5.3.1. QUALITY CONTROL 105
5.3.2. CLASSIFICATION OF FRAGMENTS 105
5.3.3. GROSS AREAS 106
5.3.4. THE FINEST FRACTION 107
5.3.5. APPROACH TO DETERMINE A O C AND A N C 108
5.3.6. APPROXIMATE SOLUTIONS FOR A D C AND A ^ C 109
5.4. PLANIMETRICAL CONCEPT FOR FINE PARTICLES 110
5.4.1. CONSIDERATIONS FOR THE HEYWOOD FACTOR 110
5.4.2. GRAIN SIZE INVESTIGATIONS WITHIN A FRACTION I L L
5.4.3. IPA AND SELF-SIMILARITY 112
5.5. CONSIDERATIONS FOR SUBPOPULATION CLASSES 114
5.6. RESULTS OF FRACTURE AREA ANALYSIS 119
5.6.1. HEYWOOD FACTOR / # : RESULTS AND DEPENDENCIES 119
5.6.2. RESULTS FOR THE FINEST PARTICLES (F 1 120
5.6.3. RESULTING FRACTURE AREAS 121
6. ENERGY BALANCES 123
6.1. TOTAL ENERGY INPUT ETOT 123
6.1.1. OVERVIEW OF RESULTS 123
6.1.2. DEPENDENCIES 123
6.2. KINETIC ENERGIES OF FRAGMENTS E^ IN 125
6.2.1. DETERMINATION OF EKIN 125
6.2.2. OVERVIEW OF RESULTS 127
6.2.3. DEPENDENCIES 128
6.3. ENERGIES DISSIPATING INTO THE SETUP E S E T U P 128
6.3.1. MODELS OF DETERMINATION 128
6.3.2. OVERVIEW OF RESULTS AND DEPENDENCIES OF E SE T UP 131
3
IMAGE 4
CONTENTS
6.4. PLASTIC DEFORMATION ENERGY EDEF 132
6.5. ACOUSTIC ENERGIES E A I R 133
6.6. FRACTURE ENERGIES E F R A C 133
6.6.1. DETERMINATION AND OVERVIEW OF RESULTS 133
6.6.2. DEPENDENCIES 134
7. COMPLEMENTARY RESULTS O F MULTIVARIATE STATISTICAL ANALYSIS 137
8. FRACTURE SURFACE ENERGY DENSITIES 139
8.1. RESULTS FOR THE BASIC FSED MODEL AND R) TO T 139
8.2. RESULTS FOR THE FRACTURE-SPECIFIC FSED MODEL AND FF 141
8.2.1. FSED DETERMINATION CONCEPTS 141
8.2.2. NORMAL CRACK-SPECIFIC FSED T ] NC : RESULTS AND DEPENDENCIES 142
8.2.3. RESULTS AND DEPENDENCIES OF DAMAGE CRACK-SPECIFIC FSED RJOC . . .
. 143 8.2.4. CHECKING FOR LOCAL DEPENDENCIES 144
8.3. CRACK CLASS-SPECIFIC FRACTURE ENERGIES E ^ C AND E U C 148
8.3.1. RESULTS AND DEPENDENCIES OF E ^ C 148
8.3.2. RESULTS OF E U C AND IMPACT NOTCH THEORY 149
8.4. COMPARISON OF THE LINEAR FSED MODELS 151
8.5. COMPLEMENTARY CONCLUSIONS REGARDING THE FSED PARAMETERS 153
9. DYNAMICS O F FRACTURES AND ENERGY DISSIPATION 154
9.1. GENERAL REMARKS 154
9.1.1. DEFINITIONS OF DYNAMIC FRACTURE PARAMETERS 154
9.1.2. APPLIED STATISTICAL PARAMETERS 156
9.2. DYNAMICS OF DAMAGE CRACKS 157
9.2.1. DEFINITION OF THE AVERAGE DAMAGE CRACK VELOCITY V A V G O C 157
9.2.2. FEATURES OF DAMAGE CRACK VELOCITIES 159
9.2.3. INFLUENCES ON THE FLUCTUATION 161
9.2.4. TYPICAL VELOCITIES OF DAMAGE FRACTURE AREAS 161
9.2.5. DEPENDENCIES OF THE TEMPORAL EVOLUTION OF DAMAGE FRACTURE AREAS .
. 162 9.3. FRACTURE ENERGY DISSIPATION OF DAMAGE CRACKS 163
9.3.1. FIRST STAGE: IMPACT NOTCH GENERATION 163
9.3.2. SECOND STAGE: SHOCK WAVES 164
9.3.3. THIRD STAGE: STRESS GRADIENT INDUCED FRACTURES 165
9.3.4. RESULTING MODEL 165
9.4. NORMAL CRACK TIP VELOCITIES 168
9.5. NORMAL CRACK VELOCITIES 170
9.5.1. STATISTICAL OVERVIEW 170
9.5.2. INFLUENCES OF THE HAMMER IMPACT VELOCITY 170
9.5.3. ADDITIONAL CORRELATIONS 171
9.6. FAVS AND ENERGY DISSIPATION RATES OF NORMAL CRACKS 174
9.6.1. REPRESENTATIVE DYNAMIC FRACTURE ENERGY DISSIPATION PROFILES 174
9.6.2. STATISTICAL OVERVIEW OF THE DYNAMIC FRACTURE PARAMETERS 188
9.6.3. INFLUENCE OF THE IMPACT VELOCITY 190
9.6.4. INFLUENCE OF THE HAMMER GEOMETRY 191
9.6.5. THE LOCAL STRESS ANISOTROPY EFFECT 191
10. ALL INFLUENCES ON FRACTURE DYNAMICS IN A NUTSHELL 195
4
IMAGE 5
MOTIVATION AND OBJECTIVES
VI. VOLCANOLOGICAL IMPLEMENTATION O F THE FINDINGS 197
1. COMPARATIVE PARTICLE ANALYSIS 199
1.1. GENERAL REMARKS 199
1.2. STUDIED REFERENCE MATERIALS 199
1.2.1. HIE PARTICLES 199
1.2.2. NATURAL VOLCANIC ASH PARTICLES 199
1.2.3. EXPERIMENTAL VOLCANIC ASH PARTICLES 200
1.3. APPLIED STATISTICAL METHODS 201
1.4. ANALYZED GRAIN-SIZE SPECTRA 201
1.5. THE SUBPOPULATION PROBLEM 202
2. RESULTS O F COMPARATIVE IPA STUDIES 2 0 3
3. VOLCANOLOGICAL CONCLUSIONS 210
VII. CONCLUSION 2 1 1
APPENDIX
A. ERROR ANALYSES 225
B. DAISY CHAIN DISCRIMINANT ANALYSIS PROCEDURES DVD
C. SIEVING ANALYSIS RESULTS DVD
D. IPA RESULTS DVD
E. DETERMINED FRACTURE AREAS DVD
F. QUANTIFIED ENERGIES AND FSED RESULTS DVD
G. REPRESENTATIVE RESULTS O F DYNAMIC FRACTURE PARAMETERS DVD
H. RESULTS O F MULTIVARIATE STATISTICAL ANALYSIS - SPSS OUTPUT DATA DVD
I. REPRESENTATIVE HIE IMAGE SEQUENCES DVD
5 |
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author | Dürig, Tobias 1979- |
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spelling | Dürig, Tobias 1979- Verfasser (DE-588)1027740944 aut Fracture dynamics in silicate glasses von Tobias Dürig Bruchdynamiken in Silikatgläsern 2011 II, 229 S. Ill., graph. Darst. CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier Zsfassung in dt. und engl. Sprache Würzburg, Univ., Diss., 2012 Bruchmechanik (DE-588)4112837-0 gnd rswk-swf Glas (DE-588)4021142-3 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Glas (DE-588)4021142-3 s Bruchmechanik (DE-588)4112837-0 s DE-604 Erscheint auch als Online-Ausgabe urn:nbn:de:bvb:20-opus-73492 https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-73492 Resolving-System kostenfrei Volltext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025384309&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Dürig, Tobias 1979- Fracture dynamics in silicate glasses Bruchmechanik (DE-588)4112837-0 gnd Glas (DE-588)4021142-3 gnd |
subject_GND | (DE-588)4112837-0 (DE-588)4021142-3 (DE-588)4113937-9 |
title | Fracture dynamics in silicate glasses |
title_alt | Bruchdynamiken in Silikatgläsern |
title_auth | Fracture dynamics in silicate glasses |
title_exact_search | Fracture dynamics in silicate glasses |
title_full | Fracture dynamics in silicate glasses von Tobias Dürig |
title_fullStr | Fracture dynamics in silicate glasses von Tobias Dürig |
title_full_unstemmed | Fracture dynamics in silicate glasses von Tobias Dürig |
title_short | Fracture dynamics in silicate glasses |
title_sort | fracture dynamics in silicate glasses |
topic | Bruchmechanik (DE-588)4112837-0 gnd Glas (DE-588)4021142-3 gnd |
topic_facet | Bruchmechanik Glas Hochschulschrift |
url | https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-73492 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025384309&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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