The rheology handbook: for users of rotational and oscillatory rheometers
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hannover
Vincentz Network
2011
|
Ausgabe: | 3., rev. ed. |
Schlagworte: | |
Online-Zugang: | Ausführliche Beschreibung Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | 432 S. Ill., graph. Darst. 27 cm |
ISBN: | 9783866308640 |
Internformat
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300 | |a 432 S. |b Ill., graph. Darst. |c 27 cm | ||
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Datensatz im Suchindex
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adam_text | IMAGE 1
CONTENTS
1 INTRODUCTION 17
1.1 RHEOLOGY, RHEOMETRY AND VISCOELASTICITY 17
1.2 DEFORMATION AND FLOW BEHAVIOR 18
2 FLOW BEHAVIOR AND VISCOSITY 21
2.1 INTRODUCTION 21
2.2 DEFINITION OF TERMS 21
2.2.1 SHEAR STRESS 22
2.2.2 SHEAR RATE 22
2.2.3 VISCOSITY 26
2.3 SHEAR LOAD-DEPENDENT FLOW BEHAVIOR 29
2.3.1 IDEALLY VISCOUS FLOW BEHAVIOR ACCORDING TO NEWTON 29
2.4 TYPES OF FLOW ILLUSTRATED BY THE TWO-PLATES MODEL 31
3 ROTATIONAL TESTS 33
3.1 INTRODUCTION 33
3.2 BASIC PRINCIPIES 33
3.2.1 TEST MODES CONTROLIED SHEAR RATE (CSR) AND CONTROLIED SHEAR STRESS
(CSS), RAW DATA AND RHEOLOGICAL PARAMETERS 33
3.3 FLOW CURVES AND VISCOSITY FUNCTIONS 34
3.3.1 DESCRIPTION OF THE TEST 34
3.3.2 SHEAR-THINNING FLOW BEHAVIOR 38
3.3.2.1 STRUCTURES OF POLYMERS SHOWING SHEAR-THINNING BEHAVIOR 39
3.3.2.2 STRUCTURES OF DISPERSIONS SHOWING SHEAR-THINNING BEHAVIOR 44
3.3.3 SHEAR-THICKENING FLOW BEHAVIOR 44
3.3.3.1 STRUCTURES OF POLYMERS SHOWING SHEAR-THICKENING BEHAVIOR 48
3.3.3.2 STRUCTURES OF DISPERSIONS SHOWING SHEAR-THICKENING BEHAVIOR 49
3.3.4 YIELD POINT 49
3.3.4.1 YIELD POINT DETERMINATION USING THE FLOW CURVE DIAGRAM 50
3.3.4.2 YIELD POINT DETERMINATION USING THE SHEAR STRESS/DEFORMATION
DIAGRAM 51 3.3.4.3 FURTHER INFORMATION ON YIELD POINTS 53
3.3.5 OVERVIEW: FLOW CURVES AND VISCOSITY FUNCTIONS 57
3.3.6 FITTING FUNCTIONS FOR FLOW AND VISCOSITY CURVES 58
3.3.6.1 MODEL FUNCTION FOR IDEALLY VISCOUS FLOW BEHAVIOR 59
3.3.6.2 MODEL FUNCTIONS FOR SHEAR-THINNING AND SHEAR-THICKENING FLOW
BEHAVIOR 59 3.3.6.3 MODEL FUNCTIONS FOR FLOW BEHAVIOR WITH ZERO-SHEAR
AND INFINITE-SHEAR VISCOSITY 60
3.3.6.4 MODEL FUNCTIONS FOR FLOW CURVES WITH A YIELD POINT 61
3.3.7 THE EFFECTS OF RHEOLOGICAL ADDITIVES IN AQUEOUS DISPERSIONS 64 3.4
TIME-DEPENDENT FLOW BEHAVIOR AND VISCOSITY FUNCTION 68
3.4.1 DESCRIPTION OF THE TEST 68
3.4.2 TIME-DEPENDENT FLOW BEHAVIOR OF SAMPLES SHOWING NO HARDENING 69
3.4.2.1 STRUCTURAL DECOMPOSITION AND REGENERATION (THIXOTROPY AND
RHEOPEXY) 70
THOMAS G. MEZGER: THE RHEOLOGY HANDBOOK COPYRIGHT 2011 BY VINCENTZ
NETWORK, HANOVER, GERMANY ISBN978-3-86O30-864-0
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1009889605
DIGITALISIERT DURCH
IMAGE 2
10 CONTENTS
3.4.2.2 TEST METHODS FOR INVESTIGATING THIXOTROPIC BEHAVIOR 72
3.4.3 TIME-DEPENDENT FLOW BEHAVIOR OF SAMPLES SHOWING HARDENING 79 3.5
TEMPERATURE-DEPENDENT FLOW BEHAVIOR AND VISCOSITY FUNCTION 80
3.5.1 DESCRIPTION OF THE TEST 80
3.5.2 TEMPERATURE-DEPENDENT FLOW BEHAVIOR OF SAMPLES SHOWING NO
HARDENING 81 3.5.3 TEMPERATURE-DEPENDENT FLOW BEHAVIOR OF SAMPLES
SHOWING HARDENING 82 3.5.4 FITTING FUNCTIONS FOR CURVES OF THE
TEMPERATURE-DEPENDENT VISCOSITY 83 3.6 PRESSURE-DEPENDENT FLOW BEHAVIOR
AND VISCOSITY FUNCTION 85
4 ELASTIC BEHAVIOR AND SHEAR MODULUS 89
4.1 INTRODUCTION 89
4.2 DEFINITION OF TERMS 89
4.2.1 DEFORMATION AND STRAIN 89
4.2.2 SHEAR MODULUS 90
4.3 SHEAR LOAD-DEPENDENT DEFORMATION BEHAVIOR 93
4.3.1 IDEALLY ELASTIC DEFORMATION BEHAVIOR ACCORDING TO HOOKE 93
5 VISCOELASTIC BEHAVIOR 97
5.1 INTRODUCTION 97
5.2 BASIC PRINCIPIES 97
5.2.1 VISCOELASTIC LIQUIDS ACCORDING TO MAXWELL 97
5.2.1.1 MAXWELL MODEL 97
5.2.1.2 EXAMPLES OF THE BEHAVIOR OF VE LIQUIDS IN PRACTICE 99
5.2.2 VISCOELASTIC SOLIDS ACCORDING TO KELVIN/VOIGT 102
5.2.2.1 KELVIN/VOIGT MODEL 102
5.2.2.2 EXAMPLES OF THE BEHAVIOR OF VE SOLIDS IN PRACTICE 104
5.3 NORMAL STRESSES 106
6 CREEP TESTS 109
6.1 INTRODUCTION 109
6.2 BASIC PRINCIPIES 109
6.2.1 DESCRIPTION OF THE TEST 109
6.2.2 IDEALLY ELASTIC BEHAVIOR 110
6.2.3 IDEALLY VISCOUS BEHAVIOR 111
6.2.4 VISCOELASTIC BEHAVIOR 111
6.3 ANALYSIS 112
6.3.1 BEHAVIOR OF THE MOLECULES 112
6.3.2 BUERGERS MODEL 112
6.3.3 CURVE DISCUSSION 113
6.3.4 DEFINITION OF TERMS 116
6.3.4.1 ZERO-SHEAR VISCOSITY 116
6.3.4.2 CREEP COMPLIANCE, AND CREEP RECOVERY COMPLIANCE 117
6.3.4.3 RETARDATION TIME 118
6.3.4.4 RETARDATION TIME SPECTRUM 119
6.3.5 DATA CONVERSION 121
6.3.6 DETERMINATION OF THE MOLAR MASS DISTRIBUTION 122
7 RELAXATION TESTS 123
7.1 INTRODUCTION 123
7.2 BASIC PRINCIPIES 123
7.2.1 DESCRIPTION OF THE TEST 123
IMAGE 3
CONTENTS 11
7.2.2 IDEALLY ELASTIC BEHAVIOR 124
7.2.3 IDEALLY VISCOUS BEHAVIOR 125
7.2.4 VISCOELASTIC BEHAVIOR 125
73 ANALYSIS 126
7.3.1 BEHAVIOR OF THE MOLECULES 126
7.3.2 CURVE DISCUSSION 127
7.3.3 DEFINITION OF TERMS 128
7.3.3.1 RELAXATION MODULUS 128
7.3.3.2 RELAXATION TIME 129
7.3.3.3 RELAXATION TIME SPECTRUM 130
7.3.4 DATA CONVERSION 132
7.3.5 DETERMINATION OF THE MOLAR MASS DISTRIBUTION 134
8 OSCILLATORY TESTS 135
8.1 INTRODUCTION 135
8.2 BASIC PRINCIPIES 135
8.2.1 IDEALLY ELASTIC BEHAVIOR 136
8.2.2 IDEALLY VISCOUS BEHAVIOR 138
8.2.3 VISCOELASTIC BEHAVIOR 138
8.2.4 DEFINITION OF TERMS 139
8.2.5 THE TEST MODES CONTROLIED SHEAR STRAIN AND CONTROLIED SHEAR
STRESS, RAW DATA AND RHEOLOGICAL PARAMETERS 144
8.3 AMPLITUDE SWEEPS 146
8.3.1 DESCRIPTION OF THE TEST 146
8.3.2 STRUCTURAL CHARACTER OF A SAMPLE 146
8.3.3 LIMITING VALUE OF THE LVE RANGE 148
8.3.3.1 LIMITING VALUE OF THE LVE RANGE IN TERMS OF THE SHEAR STRAIN 148
8.3.3.2 LIMITING VALUE OF THE LVE RANGE IN TERMS OF THE SHEAR STRESS 151
8.3.4 DETERMINATION OF THE YIELD POINT AND THE FLOW POINT BY AMPLITUDE
SWEEPS 151 8.3.4.1 YIELD POINT OR YIELD STRESS TY 151
8.3.4.2 FLOW POINT OR FLOW STRESS TI 152
8.3.4.3 YIELD ZONE BETWEEN YIELD POINT AND FLOW POINT 152
8.3.4.4 EVALUATION OF THE TWO TERMS YIELD POINT AND FLOW POINT 153
8.3.4.5 MEASURING PROGRAMS IN COMBINATION WITH AMPLITUDE SWEEPS 153
8.3.5 FREQUENCY-DEPENDENCE OF AMPLITUDE SWEEPS 154
8.3.6 SAOS AND LAOS TESTS, AND LISSAJOUS DIAGRAMS 155
8.4 FREQUENCY SWEEPS 159
8.4.1 DESCRIPTION OF THE TEST 160
8.4.2 BEHAVIOR OF UNLINKED POLYMERS (SOLUTIONS AND MELTS) 161
8.4.2.1 SINGLE MAXWELL MODEL FOR UNLINKED POLYMERS SHOWING A NARROW MMD
161 8.4.2.2 GENERALIZED MAXWELL MODEL FOR UNLINKED POLYMERS SHOWING A
WIDE MMD.. 165 8.4.3 BEHAVIOR OF CROSS-LINKED POLYMERS 168
8.4.4 BEHAVIOR OF DISPERSIONS AND GELS 171
8.4.5 COMPARISON OF SUPERSTRUCTURES USING FREQUENCY SWEEPS 174
8.4.6 MULTIWAVE TEST 174
8.4.7 DATA CONVERSION 176
8.5 TIME-DEPENDENT BEHAVIOR AT CONSTANT DYNAMIC-MECHANICAL AND
ISOTHERMAL CONDITIONS 176
8.5.1 DESCRIPTION OF THE TEST 176
8.5.2 TIME-DEPENDENT BEHAVIOR OF SAMPLES SHOWING NO HARDENING 177
8.5.2.1 STRUCTURAL DECOMPOSITION AND REGENERATION (THIXOTROPY AND
RHEOPEXY) 178
IMAGE 4
12 CONTENTS
8.5.2.2 TEST METHODS FOR INVESTIGATING THIXOTROPIC BEHAVIOR 179
8.5.3 TIME-DEPENDENT BEHAVIOR OF SAMPLES SHOWING HARDENING 185
8.6 TEMPERATURE-DEPENDENT BEHAVIOR AT CONSTANT DYNAMIC MECHANICAL
CONDITIONS 188
8.6.1 DESCRIPTION OF THE TEST 189
8.6.2 TEMPERATURE-DEPENDENT BEHAVIOR OF SAMPLES SHOWING NO HARDENING 190
8.6.2.1 TEMPERATURE CURVES AND STRUCTURES OF POLYMERS 190
8.6.2.2 TEMPERATURE-CURVES OF DISPERSIONS AND GELS 197
8.6.3 TEMPERATURE-DEPENDENT BEHAVIOR OF SAMPLES SHOWING HARDENING 200
8.6.4 THERMOANALYSIS (TA) 202
8.7 TIME/TEMPERATURE SHIFT 203
8.7.1 TEMPERATURE SHIFT FACTOR ACCORDING TO THE WLF METHOD 204
8.8 THE COX/MERZ RELATION 209
8.9 COMBINED ROTATIONAL AND OSCILLATORY TESTS 210
8.9.1 PRESETTING ROTATION AND OSCILLATION IN SERIES 210
8.9.2 SUPERPOSITION OF OSCILLATION AND ROTATION 210
9 COMPLEX BEHAVIOR, SURFACTANT SYSTEMS 213
9.1 SURFACTANT SYSTEMS 213
9.1.1 SURFACTANT STRUCTURES AND MICELLES 213
9.1.2 EMULSIONS 222
9.1.3 MIXTURES OF SURFACTANTS AND POLYMERS, SURFACTANT-LIKE POLYMERS 223
9.1.4 APPLICATIONS OF SURFACTANT SYSTEMS 225
9.2 RHEOLOGICAL BEHAVIOR OF SURFACTANT SYSTEMS 226
9.2.1 TYPICAL SHEAR BEHAVIOR 226
9.2.2 SHEAR-INDUCED EFFECTS, SHEAR-BANDING AND RHEO CHAOS 229
10 MEASURING SYSTEMS 233
10.1 INTRODUCTION 233
10.2 CONCENTRIC CYLINDER MEASURING SYSTEMS (CC MS) 233
10.2.1 CYLINDER MEASURING SYSTEMS IN GENERAL 233
10.2.1.1 GEOMETRY OF CYLINDER MEASURING SYSTEMS SHOWING A LARGE GAP 233
10.2.1.2 OPERATING METHODS 233
10.2.1.3 CALCULIONS 234
10.2.2 NARROW-GAP CONCENTRIC CYLINDER MEASURING SYSTEMS ACCORDING TO ISO
3219 235 10.2.2.1 GEOMETRY OF ISO CYLINDER SYSTEMS 235
10.2.2.2 CALCULIONS 237
10.2.2.3 CONVERSION BETWEEN RAW DATA AND RHEOLOGICAL PARAMETERS 238
10.2.2.4 FLOW INSTABILITIES AND SECONDARY FLOW EFFECTS IN CYLINDER
MEASURING SYSTEMS.. 238 10.2.2.5 ADVANTAGES AND DISADVANTAGES OF
CYLINDER MEASURING SYSTEMS 240 10.2.3 DOUBLE-GAP MEASURING SYSTEMS (DG
MS) 241
10.2.4 HIGH-SHEAR CYLINDER MEASURING SYSTEMS (HS MS) 241
10.3 CONE-AND-PLATE MEASURING SYSTEMS (CP MS) 242
10.3.1 GEOMETRY OF CONE-AND-PLATE SYSTEMS 242
10.3.2 CALCULIONS 242
10.3.3 CONVERSION BETWEEN RAW DATA AND RHEOLOGICAL PARAMETERS 244
10.3.4 FLOW INSTABILITIES AND SECONDARY FLOW EFFECTS IN CP SYSTEMS 244
10.3.5 CONE TRUNCATION AND GAP SETTING 244
10.3.6 MAXIMUM PARTICLE SIZE 245
10.3.7 FILLING OF THE CONE-AND-PLATE MEASURING SYSTEM 246
10.3.8 ADVANTAGES AND DISADVANTAGES OF CONE-AND-PLATE MEASURING SYSTEMS
246
IMAGE 5
CONTENTS 13
10.4 PARALLEL-PLATE MEASURING SYSTEMS (PP MS) 248
10.4.1 GEOMETRY OF PARALLEL-PLATE SYSTEMS 248
10.4.2 CALCULATIONS 249
10.4.3 CONVERSION BETWEEN RAW DATA AND RHEOLOGICAL PARAMETERS 250
10.4.4 FLOW INSTABILITIES AND SECONDARY FLOW EFFECTS IN A PP SYSTEM 251
10.4.5 RECOMMENDATIONS FOR GAP SETTING 251
10.4.6 AUTOMATIC GAP SETTING AND AUTOMATIC GAP CONTROL USING THE NORMAL
FORCE CONTROL OPTION 251
10.4.7 DETERMINATION OF THE TEMPERATURE GRADIENT IN THE SAMPLE 252
10.4.8 ADVANTAGES AND DISADVANTAGES OF PARALLEL-PLATE MEASURING SYSTEMS
252 10.5 MOONEY/EWART MEASURING SYSTEMS (ME MS) 254
10.6 RELATIVE MEASURING SYSTEMS 255
10.6.1 MEASURING SYSTEMS WITH SANDBLASTED, PROFILED OR SERRATED SURFACES
255 10.6.2 SPINDLES IN THE FORM OF DISKS, PINS, AND SPHERES 256
10.6.3 KREBS SPINDLES OR PADDLES 259
10.6.4 PASTE SPINDLES AND ROTORS SHOWING PINS AND VANES 260
10.6.5 BALL MEASURING SYSTEMS, PERFORMING ROTATION ON A CIRCULAR LINE
261 10.6.6 FURTHER RELATIVE MEASURING SYSTEMS 262
10.7 MEASURING SYSTEMS FOR SOLID TORSION BARS 262
10.7.1 BARS SHOWING A RECTANGULAR CROSS SECTION 263
10.7.2 BARS SHOWING A CIRCULAR CROSS SECTION 265
10.7.3 COMPOSITE MATERIAIS 266
10.8 SPECIAL MEASURING DEVICES 267
10.8.1 SPECIAL MEASURING CONDITIONS WHICH INFLUENCE RHEOLOGY 267
10.8.1.1 MAGNETIC FIELDS FOR MAGNETO-RHEOLOGICAL FLUIDS 267
10.8.1.2 ELECTRICAL FIELDS FOR ELECTRO-RHEOLOGICAL FLUIDS 268
10.8.1.3 IMMOBILIZATION OF SUSPENSIONS BY EXTRACTION OF FLUID 268
10.8.1.4 UV LIGHT FOR UV-CURING MATERIAIS 269
10.8.2 RHEO-OPTICAL MEASURING DEVICES 269
10.8.2.1 TERMS FROM OPTICS 270
10.8.2.2 MICROSCOPY 274
10.8.2.3 DEVICES FOR MEASURING ANISOTROPY IN TERMS OF OPTICAL ROTATION
AND BIREFRINGENCE 275
10.8.2.4 SALS FOR DIFFRACTED LIGHT QUANTA 275
10.8.2.5 SAXS FOR DIFFRACTED X-RAYS 276
10.8.2.6 SANS FOR SCATTERED NEUTRONS 277
10.8.2.7 VELOCITY PROFILE OF FLOW FIELDS 278
10.8.3 OTHER SPECIAL MEASURING DEVICES 278
10.8.3.1 INTERFACIAL RHEOLOGY ON TWO-DIMENSIONAL LIQUID FILMS 278
10.8.3.2 DIELECTRIC ANALYSIS, AND DE CONDUCTIVITY OF MATERIAIS SHOWING
ELECTRIC DIPOLES 278
10.8.3.3 NMR, AND RESONANCE OF MAGNETICALLY ACTIVE ATOMIC NUCLEI 280
10.8.4 OTHER KINDS OF TESTINGS BESIDES SHEAR TESTS 280
10.8.4.1 TENSILE TESTS, EXTENSIONAL VISCOSITY, AND EXTENSIONAL RHEOLOGY
280 10.8.4.2 TACK TEST, STICKINESS AND TACKINESS 284
10.8.4.3 TRIBOLOGY 287
11 INSTRUMENTS 291
11.1 INTRODUCTION 291
11.2 SHORT OVERVIEW: METHODS FOR TESTING VISCOSITY AND ELASTICITY 291
11.2.1 VERY SIMPLE DETERMINATIONS 291
IMAGE 6
14 CONTENTS
11.2.2 FLOW ON A HORIZONTAL PLANE 292
11.2.3 SPREADING OR SLUMP ON A HORIZONTAL PLANE AFTER LIFTING A
CONTAINER 293 11.2.4 FLOW ON AN INCLINED PLANE 294
11.2.5 FLOW ON A VERTICAL PLANE OR OVER A SPECIAL TOOL 294
11.2.6 FLOW IN A CHANNEL, TROUGH OR BOWL 295
11.2.7 FLOW CUPS AND OTHER PRESSURELESS CAPILLARY VISCOMETERS 296
11.2.8 DEVICES SHOWING RISING, SINKING, FALLING AND ROLLING ELEMENTS 296
11.2.9 PENETROMETERS, CONSISTOMETERS AND TEXTURE ANALYZERS 298
11.2.10 PRESSURIZED CYLINDER AND CAPILLARY DEVICES 300
11.2.11 SIMPLE ROTATIONAL VISCOMETER TESTS 301
11.2.12 DEVICES WITH VIBRATING OR OSCILLATING ELEMENTS 304
11.2.13 ROTATIONAL AND OSCILLATORY CUREMETERS (FOR RUBBER TESTING) 305
11.2.14 TENSION TESTERS 307
11.2.15 COMPRESSION TESTERS 308
11.2.16 LINEAR SHEAR TESTERS 308
11.2.17 BENDING OR FLEXURE TESTERS 308
11.2.18 TORSION TESTERS 309
11.3 FLOW CUPS 310
11.3.1 ISO CUP 311
11.3.1.1 CAPILLARY LENGTH 311
11.3.1.2 CALCULATIONS 312
11.3.1.3 FLOW INSTABILITIES, SECONDARY FLOW EFFECTS, TURBULENT FLOW
CONDITIONS IN FLOW CUPS 313
11.3.2 OTHER TYPES OF FLOW CUPS 314
11.4 CAPILLARY VISCOMETERS 315
11.4.1 GLASS CAPILLARY VISCOMETERS 315
11.4.1.1 CALCULATIONS 317
11.4.1.2 DETERMINATION OF THE MOLAR MASS OF POLYMERS USING DILUTED
POLYMER SOLUTIONS 319
11.4.1.3 DETERMINATION OF THE VISCOSITY INDEX VI OF PETROCHEMICALS 323
11.4.2 PRESSURIZED CAPILLARY VISCOMETERS 324
11.4.2.1 MFR AND MVR TESTERS DRIVEN BY A WEIGHT ( LOW-PRESSURE CAPILLARY
VISCOMETERS ) 324
11.4.2.2 HIGH-PRESSURE CAPILLARY VISCOMETERS DRIVEN BY AN ELECTRIC
DRIVE, FOR TESTING HIGHLY VISCOUS AND PASTE-LIKE MATERIAIS 329
11.4.2.3 HIGH-PRESSURE CAPILLARY VISCOMETERS DRIVEN BY GAS PRESSURE, FOR
TESTING LIQUIDS 332
FALLING-BALL VISCOMETERS 334
ROTATIONAL AND OSCILLATORY RHEOMETERS 335
RHEOMETER SET-UPS 337
CONTROL LOOPS 338
DEVICES TO MEASURE TORQUES 341
DEVICES TO MEASURE DEFLECTION ANGLES AND ROTATIONAL SPEEDS 342 BEARINGS
343
TEMPERATURE CONTROL SYSTEMS 344
GUIDELINE FOR RHEOLOGICAL TESTS 349
SELECTION OF THE MEASURING SYSTEM 349
ROTATIONAL TESTS 349
FLOW AND VISCOSITY CURVES 349
TIME-DEPENDENT FLOW BEHAVIOR (ROTATION) 350
11. 11. 11. 11.
11.
.5 .6 .6.1 .6.2 .6.3
11.6.4 11.6.5 11.6.6
12 12 12 12 12
.1 .2 .2.1 .2.2
IMAGE 7
CONTENTS 15
12.2.3 STEP TESTS (ROTATION): STRUCTURAL DECOMPOSITION AND REGENERATION
( THIXOTROPY ) 350
12.2.4 TEMPERATURE-DEPENDENT FLOW BEHAVIOR (ROTATION) 351
12.3 OSCILLATORY TESTS 351
12.3.1 AMPLITUDE SWEEPS 351
12.3.2 FREQUENCY SWEEPS 351
12.3.3 TIME-DEPENDENT VISCOELASTIC BEHAVIOR (OSCILLATION) 352
12.3.4 STEP TESTS (OSCILLATION): STRUCTURAL DECOMPOSITION AND
REGENERATION ( THIXOTROPY ) 352
12.3.5 TEMPERATURE-DEPENDENT VISCOELASTIC BEHAVIOR (OSCILLATION) 353
12.4 SELECTION OF THE TEST TYPE 354
12.4.1 BEHAVIOR AT REST 354
12.4.2 FLOW BEHAVIOR 355
12.4.3 STRUCTURAL DECOMPOSITION AND REGENERATION ( THIXOTROPIC
BEHAVIOR , E.G. OF COATINGS) 355
13 RHEOLOGISTS AND THE HISTORICAL DEVELOPMENT OF RHEOLOGY 357
13.1 DEVELOPMENT UNTIL THE 19 TH CENTURY 357
13.2 DEVELOPMENT BETWEEN 1800 AND 1900 360
13.3 DEVELOPMENT BETWEEN 1900 AND 1949 367
13.4 DEVELOPMENT BETWEEN 1950 AND 1979 376
13.5 DEVELOPMENT SINCE 1980 379
14 APPENDIX 383
14.1 SYMBOLS, SIGNS AND ABBREVIATIONS USED 383
14.2 THE GREEK ALPHABET 391
14.3 CONVERSION TABLE FOR UNITS 391
15 REFERENCES 395
15.1 PUBLICATIONS AND BOOKS 395
15.2 ISO STANDARDS 407
15.3 ASTM STANDARDS 409
15.4 DIN, DIN EN, DIN EN ISO AND EN STANDARDS 414
15.5 IMPORTANT STANDARDS FOR USERS OF ROTATIONAL RHEOMETERS 417
AUTHOR 418
INDEX 419
|
any_adam_object | 1 |
author | Mezger, Thomas 1954- |
author_GND | (DE-588)128435801 |
author_facet | Mezger, Thomas 1954- |
author_role | aut |
author_sort | Mezger, Thomas 1954- |
author_variant | t m tm |
building | Verbundindex |
bvnumber | BV037432898 |
classification_rvk | UF 3500 |
ctrlnum | (OCoLC)724426659 (DE-599)DNB1009889605 |
dewey-full | 660.2 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 660 - Chemical engineering |
dewey-raw | 660.2 |
dewey-search | 660.2 |
dewey-sort | 3660.2 |
dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie Physik |
edition | 3., rev. ed. |
format | Book |
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id | DE-604.BV037432898 |
illustrated | Illustrated |
indexdate | 2024-07-09T23:24:15Z |
institution | BVB |
isbn | 9783866308640 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-022584954 |
oclc_num | 724426659 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | 432 S. Ill., graph. Darst. 27 cm |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Vincentz Network |
record_format | marc |
spelling | Mezger, Thomas 1954- Verfasser (DE-588)128435801 aut The rheology handbook for users of rotational and oscillatory rheometers Thomas C. Mezger 3., rev. ed. Hannover Vincentz Network 2011 432 S. Ill., graph. Darst. 27 cm txt rdacontent n rdamedia nc rdacarrier Literaturangaben Rheologie (DE-588)4049828-1 gnd rswk-swf Viskosimetrie (DE-588)4188415-2 gnd rswk-swf Rheologie (DE-588)4049828-1 s Viskosimetrie (DE-588)4188415-2 s DE-604 Paralle Sprachausgabe deutsch Mezger, Thomas Das Rheologie-Handbuch5 X:MVB text/html http://www.european-coatings.com Ausführliche Beschreibung DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022584954&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Mezger, Thomas 1954- The rheology handbook for users of rotational and oscillatory rheometers Rheologie (DE-588)4049828-1 gnd Viskosimetrie (DE-588)4188415-2 gnd |
subject_GND | (DE-588)4049828-1 (DE-588)4188415-2 |
title | The rheology handbook for users of rotational and oscillatory rheometers |
title_auth | The rheology handbook for users of rotational and oscillatory rheometers |
title_exact_search | The rheology handbook for users of rotational and oscillatory rheometers |
title_full | The rheology handbook for users of rotational and oscillatory rheometers Thomas C. Mezger |
title_fullStr | The rheology handbook for users of rotational and oscillatory rheometers Thomas C. Mezger |
title_full_unstemmed | The rheology handbook for users of rotational and oscillatory rheometers Thomas C. Mezger |
title_short | The rheology handbook |
title_sort | the rheology handbook for users of rotational and oscillatory rheometers |
title_sub | for users of rotational and oscillatory rheometers |
topic | Rheologie (DE-588)4049828-1 gnd Viskosimetrie (DE-588)4188415-2 gnd |
topic_facet | Rheologie Viskosimetrie |
url | http://www.european-coatings.com http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022584954&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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