Adhesive joints: ageing and durability of epoxies and polyurethanes
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
[2019]
|
Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34185-6/ Inhaltsverzeichnis |
Beschreibung: | xvii, 520 Seiten Illustrationen 24.4 cm x 17 cm |
ISBN: | 9783527341856 3527341854 |
Internformat
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245 | 1 | 0 | |a Adhesive joints |b ageing and durability of epoxies and polyurethanes |c edited by Wulff Possart and Markus Brede |
264 | 1 | |a Weinheim |b Wiley-VCH |c [2019] | |
300 | |a xvii, 520 Seiten |b Illustrationen |c 24.4 cm x 17 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
610 | 2 | 7 | |a Epoxies |0 (DE-588)10336412-2 |2 gnd |9 rswk-swf |
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650 | 0 | 7 | |a Adhäsion |0 (DE-588)4000493-4 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Kunststoffkleben |0 (DE-588)4033696-7 |2 gnd |9 rswk-swf |
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653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Composites | ||
653 | |a Industrial Chemistry | ||
653 | |a Materials Science | ||
653 | |a Materialwissenschaften | ||
653 | |a Polymer processing | ||
653 | |a Polymer Science & Technology | ||
653 | |a Polymerverarbeitung | ||
653 | |a Polymerwissenschaft u. -technologie | ||
653 | |a Technische u. Industrielle Chemie | ||
653 | |a Verbundwerkstoffe | ||
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Datensatz im Suchindex
_version_ | 1804179092545732608 |
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adam_text | CONTENTS
A.1
A.1.1
A.1.2
A.1.2.1
A.1.2.1.1
A.L.2.1.2
A.1.2.2
A.L.2.2.1
A.L.2.2.2
A.L.2.2.3
A.L.2.2.4
A.L.2.2.5
A.1.2.3
A.L.2.3.1
A.L.2.3.2
A.1.2.4
A.1.2.5
A.1.3
A.1.3.1
A.1.3.2
A.1.3.3
A.1.4
PREFACE
XV
SECTION A INITIAL STATE OF ADHESIVE JOINTS
1
ADHESION AND INTERPHASES: THE BASIC IDEAS IN BRIEF
3
WULFF POSSART
INTRODUCTORY REMARKS AND GENERAL CONCEPTS 3
FUNDAMENTAL ADHESIVE INTERACTIONS - THE MICROSCOPIC ORIGIN
AND FURTHER CONCEPTS 4
PHYSICAL INTERM ODULAR FORCES 4
BI-MOLECULAR INTERACTIONS 5
PHYSICAL INTERACTIONS BETWEEN CONDENSED PHASES 9
CHEMICAL ADHESION MECHANISMS 11
A BRIEF SKETCH OF MO THEORY 12
AN EXTENSION TO MACROMOLECULES AND SOLIDS - THE ELECTRON BAND
STRUCTURE 13
CHEMICAL REACTIONS - GENERAL ASPECTS 14
CHEMICAL ADHESION MECHANISMS IN REACTIVE EPOXIES ON INORGANIC
SOLIDS 16
CHEMICAL ADHESION MECHANISMS IN REACTIVE POLYURETHANES ON
INORGANIC SOLIDS 18
THE ELECTROSTATIC COMPONENT OF ADHESION 21
MOBILE CHARGE CARRIERS AND THE ELECTRIC DOUBLE LAYER 22
CONTINUUM MODEL FOR THE ELECTRIC DOUBLE LAYER BUILT OF MOBILE
ELECTRONS 23
MICROSCOPIC ADHESION MECHANISMS - CO-ACTION AT THE PHASE
BOUNDARY 26
MECHANICAL INTERLOCKING 27
THE INTERPHASE - ELEMENTAL STATE OF THE ADHESIVE-ADHEREND PHASE
BOUNDARY 28
POLYMER ADHESIVES ON IMPENETRABLE SOLIDS 28
POLYMERISATION ON SOLIDS 32
THE CONTACT BETWEEN VISCOELASTIC POLYMERS 34
CLOSING REMARKS: FUNDAMENTAL VS. PRACTICAL ADHESION 35
REFERENCES 36
FURTHER READINGS 41
A.2 ADHESIVE NETWORK FORMATION: CONTINUUM MECHANICAL
MODELLING AND SIMULATION
43
GUNNAR POSSART AND PAUL STEINMANN
A.2.1 INTRODUCTION 43
A.2.2 PHENOMENOLOGICAL OBSERVATIONS IN POLYMER CURING 44
A.2.3 ONE-DIMENSIONAL LINEAR VISCOELASTIC CURING AT SMALL STRAINS 45
A.2.4 THREE-DIMENSIONAL LINEAR VISCOELASTIC CURING AT SMALL STRAINS 52
A.2.5 THREE-DIMENSIONAL CURING AT LARGE STRAINS 55
A.2.5.1 ELASTIC SIMULATION FRAMEWORK AND THERMODYNAMIC
CONSISTENCY 55
A.2.5.2 ELASTIC NEO-HOOKEAN CURING MODEL 58
A.2.5.3 VISCOELASTIC SIMULATION FRAMEWORK 59
A.2.5.4 VISCOELASTIC NEO-HOOKEAN CURING MODEL 59
A.2.5.5 THE CONSIDERATION OF CURING SHRINKAGE 64
A.2.6 MATERIAL PARAMETER EVOLUTIONS DURING CURING 65
A.2.6.1 SHEAR MODULUS/SECOND LAME PARAMETER SS 66
A.2.6.2 POISSON*S RATIO V 67
A.2.6.3 BULK MODULUS
K
AND FIRST LAME PARAMETER X 67
A.2.6.4 RELAXATION TIME T 68
A.2.6.5 CURING SHRINKAGE 5 68
A.2.6.6 DEGREE OF CURE 68
A.2.7 EPOXY-CERAMICS COMPOSITE: PHOTOELASTICITY AND CURING
SHRINKAGE 69
BIBLIOGRAPHY 73
A.3 MECHANICAL INTERPHASES IN ADHESIVE JOINTS:
CHARACTERISATION METHODS AND FE-SIMULATIONS
79
GUNNAR POSSART AND PAUL STEINMANN
A.3.1 INTRODUCTION 79
A.3.2 HIGH-RESOLUTION SHEAR TESTING BY SCANNING ELECTRON
MICROSCOPY 84
A.3.2.1 SPECIMEN PREPARATION AND EXPERIMENTAL SET-UP 84
A.3.2.2 RESULTS AND DISCUSSION 88
A.3.2.3 FE-SIMULATIONS OF ADHESIVE LAYERS WITH INTERPHASES 91
A.3.2.3.1 SIMULATION SET-UP AND MESH DEPENDENCY STUDY 92
A.3.2.3.2 ELASTIC INTERPHASES 97
A.3.2.3.3 ELASTOPLASTIC INTERPHASES
101
A.3.2.4 CAN CURING SHRINKAGE FAKE INTERPHASES? 106
A.3.3 NANOINDENTATIONS ACROSS ADHESIVE JOINTS 110
A.3.3.1 INTRODUCTION AND EXPERIMENTAL DATA 110
A.3.3.2 DETERMINATION OF STIFFNESS AND HARDNESS ACCORDING TO
OLIVER&PHARR 113
A.3.3.3 FE-SIMULATIONS OF NANOINDENTATIONS ACROSS ADHESIVE JOINTS 114
A.3.3.3.1 SIMULATION SET-UP 114
A.3.3.3.2 RESULTS AND DISCUSSION 117
A.3.4 SCANNING BRILLOUIN MICROSCOPY 120
A.3.4.1 INTRODUCTION AND EXPERIMENTAL SET-UP 120
A.3.4.2 RESULTS AND DISCUSSION 123
A.3.5 CONCLUSIONS AND OUTLOOK 126
ACKNOWLEDGEMENTS 128
BIBLIOGRAPHY 128
A.4 FRACTURE MECHANICS OF ADHESIVE JOINTS
135
MARKUS BREDE
A.4.1 INTRODUCTION 135
A.4.2 LINEAR-ELASTIC FRACTURE MECHANICS 137
A.4.3 FRACTURE IN MATERIALS WITH ENERGY DISSIPATION 143
A.4.4 THE COHESIVE ZONE MODEL AND FRACTURE OF JOINTS WITH TOUGHENED
ADHESIVES 145
A.4.5 THE MICRO-STRUCTURE OF TOUGHENED ADHESIVES 156
A.4.6 CONCLUSIONS 161
ACKNOWLEDGEMENTS 162
REFERENCES 162
SECTION B ARTIFICIAL AGEING AND FAILURE OF ADHESIVE
JOINTS
167
B.1 AGEING PHENOMENA IN POLYMERS: A SHORT SURVEY
169
ALEXANDER HERZIG; MICHAEL JOHLITZ AND ALEXANDER LION
B.1.1 WHAT IS AGEING? A BRIEF INTRODUCTION TO THE DETERIORATION
OF POLYMERS 169
B.1.2 DIFFERENT TYPES OF POLYMER AGEING 171
B.1.3 EXPERIMENTAL INVESTIGATIONS ON THE AGEING BEHAVIOUR OF
POLYMERS 181
B.1.4 INFLUENCE OF AGEING ON THE PROPERTIES OF POLYMERS 191
REFERENCES 200
B.2 CONTINUUM MODELLING OF AGEING ADHESIVE JOINTS
205
5TEFAN DIEBELS, FLORIAN GOLDSCHMIDT AND FREDERIKSCHERFF
B.2.1 OUTLINE 205
B.2.2 CONTINUUM MECHANICS OF SINGLE-PHASE MATERIALS 206
B.2.2.1 KINEMATICS 206
B.2.2.2 BALANCE EQUATIONS 211
B.2.2.3 CONSTITUTIVE EQUATIONS 214
B.2.2.4 VISCOELASTICITY 217
B.2.2.5 EXAMPLE 220
B.2.3 ADDITIONAL FIELDS 222
B.2.3.1 DIFFUSION OF TRACERS 223
B.2.3.2 FORMATION OF INTERPHASES 225
B.2.4 SUMMARY 226
REFERENCES 226
B.3 CRACK GROWTH IN ADHESIVE JOINTS: BALANCE OF ENERGY FOR
MODE I CRACK PROPAGATION
229
OLAF HESEBECK, UDO MEYER, ANDREA SONDAG AND MARKUS BREDE
B.3.1 INTRODUCTION 229
B.3.1.1 DISSIPATION IN TDCB TESTS 230
B.3.1.2 NEW APPROACH 232
B.3.2 ESTIMATE OF PLASTIC WORK USING FINITE ELEMENT SIMULATION 233
B.3.2.1 AIM 233
B.3.2.2 TENSILE TESTS AND MATERIAL MODEL 234
B.3.2.3 CHOICE OF MODELLING METHOD 237
B.3.2.4 SIMULATION AND EVALUATION OF PLASTIC STRAIN ENERGY 238
B.3.2.5 EVALUATION OF TDCB TEST RESULTS USING THE SIMULATION 244
B.3.3 TDCB TESTS WITH INFRARED CAMERA 248
B.3.3.1 AIM AND MEASUREMENT PRINCIPLE 248
B.3.3.2 EXPERIMENTAL OBSERVATIONS 249
B.3.3.3 THERMO-ELASTIC EFFECT 254
B.3.3.4 ESTIMATE OF GENERATED HEAT 256
B.3.4 DISCUSSION 258
B.3.4.1 ESTIMATE OF ENERGY BALANCE 258
B.3.4.2 LIMITS OF METHOD AND POSSIBLE EXTENSIONS 259
B.3.5 SUMMARY 262
ACKNOWLEDGEMENT 262
REFERENCES 262
B.4 JOINTS WITH A BASIC EPOXY ADHESIVE: AGEING PROCESSES
265
LEO DEPOLLIER, JESUS ERNESTO HUACUJA-SANCHEZ AND WULFF POSSART
B.4.1 INTRODUCTION 265
B.4.2 EXPERIMENTAL STRATEGY 266
B.4.2.1 BASIC EPOXY ADHESIVE 266
B.4.2.2 METAL SUBSTRATES 268
B.4.2.3 SAMPLE PREPARATION 268
B.4.2.3.1 BULK SPECIMENS 268
B.4.2.3.2 ADHESIVE JOINTS 268
B.4.2.3.3 EPOXY CURING PROTOCOL 269
B.4.2.3.4 CALORIC GLASS TRANSITION IN CURED EP65:35 270
B.4.2.4 CONDITIONS OF ARTIFICIAL AGEING 271
B.4.3 WATER DIFFUSION IN EP BULK AND ADHESIVE JOINTS 273
B.4.3.1 DIFFUSION IN BASIC EPOXY EP65:35 273
B.4.3.2 WATER CONCENTRATION PROFILES IN ADHESIVE JOINTS 278
B.4.4 MECHANICAL PROPERTIES OF FRESH AND AGED ADHESIVE JOINTS 279
B.4.4.1 TENSILE TESTS FOR DRY EPOXY BULK SAMPLES 279
B.4.4.2 SHEAR TESTS FOR FRESHLY BONDED JOINTS
280
B.4.4.3 BONDED SAMPLE STIFFNESS AND GLASS TRANSITION DURING AGEING 286
B.4.5 CHEMICAL AGEING PROCESSES 288
B.4.5.1 DE-BONDING DUE TO CORROSION OF THE METAL SUBSTRATES 288
B.4.5.2 CHEMICAL AGEING IN METAL JOINTS BONDED WITH BASIC ADHESIVE
EP65:35 291
B.4.5.3 CHEMICAL AGEING IN EP65:35 BONDED JOINTS - LIQUID WATER VERSUS
MOIST AIR 297
B.4.5.4 THE ROLE OF THE METAL SURFACE 298
B.4.6 CHEMICAL AGEING VERSUS PHYSICAL PLASTICISATION 299
B.4.7 BASIC EPOXY VERSUS COMMERCIAL EPOXY ADHESIVES
300
B.4.8 SUMMARY AND CONCLUSIONS 304
ACKNOWLEDGEMENT 306
REFERENCES 306
B.5 STEEL JOINTS WITH A BASIC POLYURETHANE ADHESIVE - AGEING
PROCESSES
309
JESUS E. HUACUJO-SANCHEZ, PHILIPP ENGEL AND WULFF POSSART
B.5.1 INTRODUCTION 309
B.5.2 PU ADHESIVE AND SAMPLE PREPARATION 313
B.5.2.1 MONOMER MIX FOR THE BASIC PU ADHESIVE 313
B.5.2.2 PU BULK SAMPLES AND PU-STEEL ADHESIVE JOINTS 314
B.5.3 ARTIFICIAL AGEING CONDITIONS 314
B.5.4 AGEING OF BULK POLYURETHANE ADHESIVE PU9010 IN WATER 315
B.5.4.1 CHEMICAL AGEING 315
B.5.4.1.1 THE VIRGIN PU9010 NETWORK 316
B.5.4.1.2 THE AGEING PU9010 BULK 323
B.5.4.1.3 SUMMARY: CHEMICAL AGEING IN PU9010 BULK AT MODERATE
CONDITIONS 329
B.5.4.2 PHYSICAL AGEING OF PU9010 BULK SAMPLES 330
B.5.5 AGEING IN ADHESIVE JOINTS PU9010-CORUNDUM BLASTED MILD STEEL
S235 331
B.5.5.1 WATER DIFFUSION IN THE ADHESIVE JOINT 331
B.5.5.2 CHEMICAL AGEING IN THE ADHESIVE JOINT 331
B.5.5.2.1 CORROSIVE ATTACK ON THE CORUNDUM BLASTED STEEL IN THE ADHESIVE
JOINT 333
B.5.5.2.2 CHEMICAL AGEING OF PU9010 IN THE ADHESIVE JOINT WITH STEEL
S235 335
B.5.5.3 PHYSICAL AGEING IN THE ADHESIVE JOINT PU9010-CORUNDUM BLASTED
STEEL S235 336
B.5.5.3.1 CALORIC GLASS TRANSITION IN THE ADHESIVE JOINT 337
B.5.5.3.2 MECHANICAL MODULUS IN THE ADHESIVE JOINT - EVOLUTION DURING
ARTIFICIAL AGEING 338
B.5.6 CONCLUSIONS 346
ACKNOWLEDGEMENT 348
REFERENCES 348
B.6 VISCOELASTICITY IN AGEING JOINTS - EXPERIMENTS AND
SIMULATION
355
FLORIAN GOLDSCHMIDT, STEFAN DIEBELS, FREDERIK SCHERFF, LEO DEPOLLIER,
JESUS ERNESTO HUACUJA-SANCHEZ AND WULFF POSSART
MOTIVATION 355
B.6.1
B.6.2
B.6.2.1
B.6.2.2
B.6.3
B.6.3.1
B.6.3.2
B.6.3.3
B. 6.3.4
B.6.3.5
B.6.4
B.6.4.1
B.6.4.2
B.6.4.2.1
B.6.4.2.2
B.6.4.3
B.6.5
B.7
B.7.1
B.7.2
B.7.3
B.7.4
B.7.5
B.8
B.8.1
B.8.2
B.8.2.1
B.8.2.2
B.8.2.3
B.8.2.3.1
B.8.2.3.2
B.8.2.3.3
B.8.3
B.8.3.1
B.8.3.2
B.8.4
B.8.4.1
B.8.4.2
TRANSPORT PROCESSES IN ADHESIVES 355
FICKS LAW OF DIFFUSION 356
LANGMUIR-TYPE OF DIFFUSION 356
CONSTITUTIVE EQUATIONS 358
TEMPERATURE 359
WATER IN THE ADHESIVE 360
CHEMICAL AGEING 361
SIZE EFFECTS 362
DAMAGE EVOLUTION MODEL 363
DATA EVALUATION AND RESULTS 364
DATA EVALUATION 365
RESULTS - POLYURETHANE ADHESIVE 366
BASIC ELASTICITY 366
VISCOELASTICITY 367
RESULTS - EPOXY ADHESIVE 371
SUMMARY 372
REFERENCES 373
ON THE ENERGY RELEASE RATE OF AGED ADHESIVE JOINTS
375
MARKUS BREDE, ANDREA SONDAG, OLAF HESEBECK AND BARBARA SCHNEIDER
INTRODUCTION 375
EXPERIMENTAL AND DEFINITIONS 376
AGEING OF POLYURETHANE ADHESIVE JOINTS 385
AGEING OF EPOXY ADHESIVE JOINTS 394
SUMMARY AND CONCLUSIONS 403
ACKNOWLEDGEMENTS 404
REFERENCES 404
COHESIVE ZONE MODEL FOR MOIST ADHESIVE JOINTS
405
OLAF HESEBECK, FLORIAN GOLDSCHMIDT AND STEFAN DIEBELS
INTRODUCTION 405
TRANSFER FROM CONTINUUM TO COHESIVE ZONE MODEL 406
VISCOELASTICITY 407
DAMAGE BEHAVIOUR 409
VALIDATION 411
TENSILE TESTS OF BUTT JOINTS 411
VALIDATION OF THE VISCOELASTIC MODEL 413
VALIDATION OF TRANSFER TO COHESIVE ZONE MODEL AND DAMAGE
MODEL 416
SIMULATION OF DIFFUSION 418
FINITE ELEMENT SIMULATION OF DIFFUSION 418
CLOSED FORM SOLUTIONS OF DIFFUSION 419
AUTOMATION OF MODEL EXTENSION 420
PROCEDURE 420
APPLICATION TESTS 422
B.8.4.3
B.8.5
C.1
C . L . L
C.1.2
C.1.2.1
C.1.2.2
C.1.3
C.1.3.1
C.1.3.2
C.1.3.3
C.1.3.4
C.1.3.5
C.L.3.6
C.L.3.7
C.1.4
C.L.4.1
C.L.4.2
C.1.5
C.2
C.2.1
C.2.2
C.2.3
C.2.3.1
C.2.3.2
C.2.3.3
EXTENSIBILITY 423
SUMMARY 424
ACKNOWLEGDEMENT 425
REFERENCES 425
SECTION C WEATHERING OF ADHESIVE JOINTS AND LIFE TIME
PREDICTION
427
ADHESIVE APPLICATION UNDER HIGH-POWER ULTRASOUND:
EFFECTS ON DURABILITY
429
BARBARA SCHNEIDER, JENS HOLTMANNSPOETTER, MARKUS SPALLEK
AND JUERGEN VON CZARNECKI
A POWER ULTRASOUND PROCESS FOR CONTAMINATION-TOLERANT ADHESIVE
APPLICATION ON CRITICAL SURFACES 429
EFFECTS OF POWER ULTRASOUND 431
CAVITATION 431
VISCOSITY CHANGES 432
DETERMINATION OF THE CLEANING BEHAVIOUR BY POWER
ULTRASOUND 433
EXPERIMENTAL 433
WEAKENING OF ADHESION BY AN APPLIED CONTAMINATION 433
EFFECT OF THE CONTAMINATION ON THE SURFACE FREE ENERGY 434
ADJUSTMENT OF THE ULTRASONIC PROCESS 436
RESULTS OF MECHANICAL TESTING (SINGLE LAP SHEAR TEST) 437
CLEANING AND IMPROVEMENT OF THE AGEING RESISTANCE BY USING POWER
ULTRASOUND 438
EFFECTS OF ULTRASONIC TREATMENT ON THE ADHESIVE ASSESSED BY
EIS 439
APPLICATION 442
ULTRASOUND-ASSISTED PRIMER APPLICATION 442
AUTOMATED REMOVAL OF RELEASE AGENTS FROM REINFORCED PLASTICS BY
POWER ULTRASOUND 444
SUMMARY 446
REFERENCES 447
LONG-TERM BEHAVIOUR OF ADHESIVELY BONDED
TIMBER-CONCRETE COMPOSITES
449
WERNER SEIM AND LARS EISENHUT
INTRODUCTION 449
HYGRO-THERMAL IMPACT 450
NUMERICAL DESCRIPTION OF HYGRO-THERMAL PHENOMENA 452
MATERIAL MODELS 453
MECHANICAL MATERIAL PROPERTIES 454
MOISTURE TRANSPORT IN WOOD 457
C.2.4 EXPERIMENTAL STUDIES 459
C.2.4.1 SMALL-SCALE SAMPLES UNDER ARTIFICIAL CLIMATIC CONDITIONS 460
C.2.4.2 FULL-SCALE SPECIMENS UNDER NATURAL CLIMATIC CONDITIONS 463
C.2.5 MODEL VALIDATION 464
C.2.5.1 WOOD MOISTURE CONTENT 464
C.2.5.2 DEFLECTION OF THE FULL-SCALE SPECIMENS 465
C.2.6 SUMMARY AND CONCLUSION 467
REFERENCES 467
C.3
C.3.1
C.3.2
C.3.2.1
C.3.2.2
C.3.2.3
C.3.3
C.3.3.1
C.3.3.2
C.3.4
C.3.4.1
C.3.4.1.1
C.3.4.1.2
C.3.4.2
C.3.5
C.3.5.1
C.3.5.2
C.3.5.3
C.3.5.4
C.3.5.4.1
C.3.6
C.3.6.1
C.3.6.2
C.3.6.3
C.3.6.4
C.3.6.5
ADHESIVE AS A PERMANENT SHEAR CONNECTION FOR COMPOSITE
BEAMS
471
WOLFGANG KURZ
,
MARKUS KLUDKA, RUBEN FRIEDLAND AND PAUL-LUDWIG GEISS
MATERIALS 472
DESCRIPTION OF THE SMALL-SCALE SPECIMENS 473
STEEL-STEEL CONNECTION 473
CONCRETE-CONCRETE CONNECTION 474
STEEL-CONCRETE CONNECTION 474
AGEING OF LAP SHEAR SPECIMENS 475
OUTDOOR WEATHERING 475
ACCELERATED AGEING 475
TEST RESULTS 476
EPOXY ADHESIVE HILTI HIT-RE 500 476
STEEL-STEEL SPECIMENS 477
CONCRETE-CONCRETE SPECIMENS 477
POLYURETHANE ADHESIVE KOERAPUR 666/90 479
LARGE-SCALE COMPOSITE BEAMS 481
TESTING OF THE COMPOSITE BEAMS 481
TEST PROCEDURE OF THE LARGE SPECIMENS 481
TEST RESULTS OF THE COMPOSITE BEAMS 483
EVALUATION OF THE TEST RESULTS 484
EVALUATION OF THE STRAIN GAUGES 486
ANALYTICAL CALCULATION OF THE ADHESIVE STRESS IN COMPOSITE
BEAMS 487
EFFECT OF THE JOINT COMPLIANCE ON THE LOAD-DEFORMATION BEHAVIOUR
OF COMPOSITE BEAMS
490
TRANSFERABILITY OF SMALL-SCALE TEST RESULTS ON LARGE
COMPONENTS
491
ANALYTICAL DETERMINATION OF THE DEFORMATION BEHAVIOUR OF
COMPOSITE BEAMS IN VIEW OF AN ACCELERATED AGEING OF
ADHESIVES 492
ANALYTICAL DETERMINATION OF THE TESTED COMPOSITE BEAM
RESULTS 494
COMPLEMENTING THE SEGMENT METHOD BY THE METHOD OF
LAMELLAE 496
C.3.7 CONCLUSIONS 498
REFERENCES 498
CA
CONCLUDING REMARKS
501
WULFF POSSART, STEFAN DIEBELS AND MARKUS BREDE
INDEX
513
|
any_adam_object | 1 |
author2 | Possart, Wulff Brede, Markus |
author2_role | edt edt |
author2_variant | w p wp m b mb |
author_GND | (DE-588)1173945105 |
author_facet | Possart, Wulff Brede, Markus |
building | Verbundindex |
bvnumber | BV045304267 |
classification_rvk | ZM 8470 VN 5550 UV 9000 UV 7100 |
ctrlnum | (OCoLC)1083272250 (DE-599)DNB1156864984 |
discipline | Chemie / Pharmazie Physik Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV045304267 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:14:22Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527341856 3527341854 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-030691357 |
oclc_num | 1083272250 |
open_access_boolean | |
owner | DE-29T DE-703 |
owner_facet | DE-29T DE-703 |
physical | xvii, 520 Seiten Illustrationen 24.4 cm x 17 cm |
publishDate | 2019 |
publishDateSearch | 2019 |
publishDateSort | 2019 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Adhesive joints ageing and durability of epoxies and polyurethanes edited by Wulff Possart and Markus Brede Weinheim Wiley-VCH [2019] xvii, 520 Seiten Illustrationen 24.4 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier Epoxies (DE-588)10336412-2 gnd rswk-swf Polyurethane (DE-588)4175327-6 gnd rswk-swf Reaktionsklebstoff (DE-588)4349034-7 gnd rswk-swf Klebeverbindung (DE-588)4125366-8 gnd rswk-swf Adhäsion (DE-588)4000493-4 gnd rswk-swf Kunststoffkleben (DE-588)4033696-7 gnd rswk-swf Technische Chemie (DE-588)4078178-1 gnd rswk-swf Epoxidharz (DE-588)4070891-3 gnd rswk-swf Klebstoff (DE-588)4031003-6 gnd rswk-swf Chemie Chemistry Composites Industrial Chemistry Materials Science Materialwissenschaften Polymer processing Polymer Science & Technology Polymerverarbeitung Polymerwissenschaft u. -technologie Technische u. Industrielle Chemie Verbundwerkstoffe Klebstoff (DE-588)4031003-6 s Kunststoffkleben (DE-588)4033696-7 s Epoxies (DE-588)10336412-2 b DE-604 Reaktionsklebstoff (DE-588)4349034-7 s Epoxidharz (DE-588)4070891-3 s Polyurethane (DE-588)4175327-6 s Klebeverbindung (DE-588)4125366-8 s Adhäsion (DE-588)4000493-4 s Technische Chemie (DE-588)4078178-1 s 1\p DE-604 Possart, Wulff (DE-588)1173945105 edt Brede, Markus edt Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-527-80375-0 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-80377-4 Erscheint auch als Online-Ausgabe, oBook 978-3-527-80374-3 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34185-6/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030691357&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Adhesive joints ageing and durability of epoxies and polyurethanes Epoxies (DE-588)10336412-2 gnd Polyurethane (DE-588)4175327-6 gnd Reaktionsklebstoff (DE-588)4349034-7 gnd Klebeverbindung (DE-588)4125366-8 gnd Adhäsion (DE-588)4000493-4 gnd Kunststoffkleben (DE-588)4033696-7 gnd Technische Chemie (DE-588)4078178-1 gnd Epoxidharz (DE-588)4070891-3 gnd Klebstoff (DE-588)4031003-6 gnd |
subject_GND | (DE-588)10336412-2 (DE-588)4175327-6 (DE-588)4349034-7 (DE-588)4125366-8 (DE-588)4000493-4 (DE-588)4033696-7 (DE-588)4078178-1 (DE-588)4070891-3 (DE-588)4031003-6 |
title | Adhesive joints ageing and durability of epoxies and polyurethanes |
title_auth | Adhesive joints ageing and durability of epoxies and polyurethanes |
title_exact_search | Adhesive joints ageing and durability of epoxies and polyurethanes |
title_full | Adhesive joints ageing and durability of epoxies and polyurethanes edited by Wulff Possart and Markus Brede |
title_fullStr | Adhesive joints ageing and durability of epoxies and polyurethanes edited by Wulff Possart and Markus Brede |
title_full_unstemmed | Adhesive joints ageing and durability of epoxies and polyurethanes edited by Wulff Possart and Markus Brede |
title_short | Adhesive joints |
title_sort | adhesive joints ageing and durability of epoxies and polyurethanes |
title_sub | ageing and durability of epoxies and polyurethanes |
topic | Epoxies (DE-588)10336412-2 gnd Polyurethane (DE-588)4175327-6 gnd Reaktionsklebstoff (DE-588)4349034-7 gnd Klebeverbindung (DE-588)4125366-8 gnd Adhäsion (DE-588)4000493-4 gnd Kunststoffkleben (DE-588)4033696-7 gnd Technische Chemie (DE-588)4078178-1 gnd Epoxidharz (DE-588)4070891-3 gnd Klebstoff (DE-588)4031003-6 gnd |
topic_facet | Epoxies Polyurethane Reaktionsklebstoff Klebeverbindung Adhäsion Kunststoffkleben Technische Chemie Epoxidharz Klebstoff |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34185-6/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030691357&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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