Advances in structural adhesive bonding: ed. by David A. Dillard
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Boca Raton [u.a.]
CRC Press [u.a.]
2010
|
Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 637 S. Ill., graph. Darst. |
ISBN: | 9781439802175 9781845694357 9781845698058 1439802173 |
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Datensatz im Suchindex
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---|---|
adam_text | Contents
Contributor
contact
details
xiii
Part
I Adhesive selection
1
Key issues in selecting the right adhesive
3
E. J. C
Kellar, TWI, UK
3
4
10
11
12
13
13
14
14
14
15
16
16
16
17
18
2
Advances in epoxy adhesives
20
K. J. Abbey, Lord Corporation, USA
2.1
Introduction
20
2.2
Main applications and limitations of epoxy adhesives
21
2.3
Recent developments in epoxy adhesives
22
2.4
Sources of further information and advice
30
2.5
References
31
1.1
Introduction
1.2
Adhesive chemistry
1.3
Adhesive form and structure
1.4
Adhesive cure mechanism
1.5
Substrate compatibility
1.6
Surface
pretreatment
1.7
Joint function and operating environment
1.8
Joint design
1.9
Manufacturing demands
1.10
Quality control
1.11
Testing and evaluation
1.12
End of life requirements
1.13
Aesthetics
1.14
Adhesive selector software
1.15
Internet provision
1.16
Future trends
ι
Woodhead Publishing Limited,
2010
vi
Contents
3
Advances in polyurethane structural adhesives
35
B. Burchardt,
Sika
Services
AG,
Switzerland
3.1
Introduction
35
3.2
Characterisation of structural adhesives
38
3.3
Chemistry
48
3.4
Design principles
54
3.5
Surface treatment strategy
57
3.6
Applications for PUR adhesives
57
3.7
Conclusions
65
3.8
References
65
4
Advances in structural
silicone
adhesives
66
C. White and K. Tan, National Institute of Standards and
Technology, USA; A. Wolf, Dow Corning Corporation, Germany;
and L. Carbary, Dow Corning Corporation, USA.
4.1
Introduction
66
4.2
Properties of
silicone
structural adhesives
67
4.3
Product forms and cure chemistry
69
4.4
Silicone
adhesive formulations
74
4.5
Applications of
silicone
structural adhesives
81
4.6
Conclusions
89
4.7
Future trends
90
4.8
Sources of further information and advice
90
4.9
References
91
5
Advances in anaerobic and cyanoacrylate adhesives
96
P. Klemarczyk,
Henkel
Corporation, USA; and J. Guthrie,
Henkel Loctite
RD&E, Ireland
5.1
Introduction to anaerobic adhesives
96
5.2
Chemistry of anaerobic adhesives
98
5.3
Recent developments in anaerobic adhesive technology
103
5.4
Introduction to cyanoacrylate adhesives
110
5.5
Cyanoacrylate adhesive formulations and adhesive types
114
5.6
Advances in cyanoacrylate technology
124
5.7
Summary
126
5.8
Future trends
127
5.9
Acknowledgement
127
5.10
References
127
6
Advances in acrylic structural adhesives
132
P. C.
Briggs,
IPS Corporation, USA; and G. L. Jialanella,
The Dow Chemical Company, USA
6.1
Introduction
132
©
Woodhead Publishing Limited,
2010
Contents
vii
6.2
Classification
of acrylic structural adhesives
137
6.3
Advantages and disadvantages and unique characteristics of
acrylic structural adhesives
140
6.4
Applications of acrylic structural adhesives
145
6.5
Manufacturers
149
6.6
Future trends
149
6.7
References
150
7
Advances in nanoparticle reinforcement in structural
adhesives
151
A. C. Taylor, Imperial College London, UK
7.1
Introduction: opportunities and limitations in nanoparticle
reinforcement
151
7.2
Types of nanoparticles and their key attributes
153
7.3
Methods of nanoparticle incorporation
158
7.4
Typical property variations available through nanoparticle
reinforcement
161
7.5
Future trends
172
7.6
Sources of further information and advice
174
7.7
Conclusions
175
7.8
References
176
Part II Adherends, surfaces and pre-treatments
8
Improvements in bonding metals (steel, aluminium)
185
A. Kwakernaak, J.
Hofstede,
J.
Poulis and R. Benedictus,
Delft University of Technology, The Netherlands
8.1
Introduction: key problems in metal bonding
185
8.2
Developments in the range of adhesives for metal
186
8.3
Developments in surface treatment techniques for metal
196
8.4
Developments in joint design
206
8.5
Developments in modelling and testing the effectiveness of
adhesive bonded metal joints
220
8.6
Future trends
228
8.7
Sources of further information and advice
229
8.8
References
230
9
Advances in bonding plastics
237
G. L. Jialanella, The Dow Chemical Company, USA
9.1
Introduction
237
9.2
Adhesion mechanisms in bonding plastics
238
9.3
Surface characteristics affecting plastic bonding
246
©
Woodhead Publishing Limited,
2010
viii Contents
9.4
Surface
treatments used in bonding plastics
247
9.5
Uses of organoboron chemistry in plastic bonding
256
9.6
Limitations of plastic bonding
258
9.7
Future trends
261
9.8
References
262
10
Bonding of polymer matrix composites
265
K. D.
Fernholz, Ford
Motor Company, USA
10.1
Introduction
265
10.2
Preteatment and surface characterization in composite
bonding
271
10.3
Composite joint design considerations
274
10.4
Modeling and testing composite joints
277
10.5
Future trends in aerospace and automotive composites
281
10.6
Sources of further information and advice
287
10.7
Acknowledgements
288
10.8
References
288
Part III Joint design
11
Selecting the right joint design and fabrication
techniques
295
K. Dilger, Technical University Braunschweig, Germany
11.1
Introduction
295
11.2
Basics
296
11.3
Selecting the right joint design
299
11.4
Fabrication techniques
301
11.5
Joints for different materials
302
11.6
Graphic representation of adhesive joints in engineering
drawings
310
11.7
Conclusions and outlook
311
11.8
References
313
12
Life prediction for bonded joints in composite
material based on actual fatigue damage
316
G. Meneghetti, M. Quaresimin and M.
Ricotta,
University of
Padova,
Italy
12.1
Introduction
316
12.2
Recent results for fatigue behaviour of single lap bonded
joints
318
12.3
Overview and analysis of fatigue damage mechanics
(nucleation and propagation)
322
©
Woodhead Publishing Limited,
2010
Contents ix
12.4
The life prediction model
332
12.5
Generalised stress intensity factor
(SIF)
approach and
assessment of the life to crack initiation
333
12.6
The crack propagation phase
338
12.7
Life prediction procedure and application
343
12.8
Discussion and conclusions
347
12.9
References
348
13
Improving adhesive joint design using fracture
mechanics
350
D. A. Dillard, Virginia Polytechnic Institute and State University, USA
13.1
Introduction
350
13.2
Fracture mechanics overview
354
13.3
Measuring adhesion fracture energies
357
13.4
Designing to resist fracture
360
13.5
Issues related to mixed mode fracture
367
13.6
Design insights from fracture mechanics
372
13.7
Design implications of other singularities
375
13.8
Numerical analysis
376
13.9
Future trends
379
13.10
Conclusions
380
13.11
References
381
14
Developments in testing adhesive joints
389
B. Duncan, National Physical Laboratory. UK
14.1
Introduction
389
14.2
Current and emerging types of testing
392
14.3
Specimen manufacture issues
410
14.4
Test variables
415
14.5
Detection of failure
421
14.6
Case study in the use of joint tests: cryogenic liquid
containment system
424
14.7
Case study in the use of joint tests: using
T
joints to
validate materials models
428
14.8
Future trends
431
14.9
Acknowledgements
432
14.10
Sources of further information and advice
432
14.11
References
434
15
Advances in testing adhesively bonded composites
437
J.-Y. Cognard, ENSIETA, France; P. Davies,
¡FREMER,
France; and
L. Sohier,
Université de Bretagne
Occidentale (UBO),
France
15.1
Introduction
437
©
Woodhead Publishing Limited,
2010
x
Contents
15.2
State of the art 438
15.3
Examples of results from traditional tests of adhesively
bonded composites
439
15.4
Modified
Arcan
test
449
15.5
Characterization of composite assemblies with the
modified
Arcan
test
456
15.6
Conclusion and future trends
463
15.7
References
464
Part IV Environmental effects and durability of adhesives
16
Designing adhesive joints for fatigue and creep load
conditions
469
/. Ashcroft,
Loughborough University, UK; and P. Briskham,
Coventry University, UK
16.1
Introduction
469
16.2
Fatigue in adhesive joints
472
16.3
Creep in adhesive joints
484
16.4
Creep-fatigue interactions in adhesive joints
497
16.5
Applications of fatigue and creep analysis of adhesively
bonded joints
499
16.6
Overall summary and future trends
510
16.7
References
511
17
Improving bonding at high and low temperatures
516
L.
F. M. da Silva,
University of Porto, Portugal
17.1
Introduction: key problems caused by high and low
temperature conditions
516
17.2
Shrinkage of the adhesive
517
17.3
Effect of differential thermal expansion
518
17.4
Effect of temperature on adhesive properties
522
17.5
Modelling high and low temperature conditions
528
17.6
Experimental joint strength results in high and low
temperature conditions
532
17.7
Techniques for optimising adhesive bonds in high and low
temperature conditions
534
17.8
Summary and future trends
540
17.9
Sources of further information and advice
541
17.10
Acknowledgements
541
17.11
References
542
©
Woodhead Publishing Limited,
2010
Contents xi
18
Assessing and improving bonding in wet
conditions
547
К.
Tan,
С.
White and D. Hunston, National Institute of Standards
and Technology, USA; B.
Vogt,
Arizona State University, USA; and
A. Haag, Haag
Chemistry LLC, USA
18.1
Introduction
547
18.2
Testing and modeling adhesive bonds in wet conditions
548
18.3
Techniques for optimizing adhesive bonds in wet conditions
559
18.4
Future trends
567
18.5
References
568
19
Improving bonding in hostile chemical environments
574
W. Broughton, National Physical Laboratory, UK
19.1
Introduction
574
19.2
Chemical agents and degradation mechanisms
575
19.3
Chemical resistance testing
587
19.4
Modelling and predictive analysis
602
19.5
Optimizing chemical resistance of adhesive joints
606
19.6
Future trends
608
19.7
Sources of further information and advice
609
19.8
Acknowledgements
609
19.9
References
609
19.10
Appendix: Standards
611
Index
617
©
Woodhead Publishing Limited,
2010
|
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dewey-tens | 620 - Engineering and allied operations |
discipline | Chemie / Pharmazie Physik |
edition | 1. publ. |
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id | DE-604.BV035497166 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:38:56Z |
institution | BVB |
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language | English |
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physical | XVI, 637 S. Ill., graph. Darst. |
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spelling | Advances in structural adhesive bonding ed. by David A. Dillard 1. publ. Boca Raton [u.a.] CRC Press [u.a.] 2010 XVI, 637 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Adhesives Kleben (DE-588)4130462-7 gnd rswk-swf Klebstoff (DE-588)4031003-6 gnd rswk-swf Adhäsion (DE-588)4000493-4 gnd rswk-swf Adhäsion (DE-588)4000493-4 s DE-604 Kleben (DE-588)4130462-7 s Klebstoff (DE-588)4031003-6 s 1\p DE-604 Dillard, David A. Sonstige oth Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017553455&sequence=000002&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 | Advances in structural adhesive bonding ed. by David A. Dillard Adhesives Kleben (DE-588)4130462-7 gnd Klebstoff (DE-588)4031003-6 gnd Adhäsion (DE-588)4000493-4 gnd |
subject_GND | (DE-588)4130462-7 (DE-588)4031003-6 (DE-588)4000493-4 |
title | Advances in structural adhesive bonding ed. by David A. Dillard |
title_auth | Advances in structural adhesive bonding ed. by David A. Dillard |
title_exact_search | Advances in structural adhesive bonding ed. by David A. Dillard |
title_full | Advances in structural adhesive bonding ed. by David A. Dillard |
title_fullStr | Advances in structural adhesive bonding ed. by David A. Dillard |
title_full_unstemmed | Advances in structural adhesive bonding ed. by David A. Dillard |
title_short | Advances in structural adhesive bonding |
title_sort | advances in structural adhesive bonding ed by david a dillard |
title_sub | ed. by David A. Dillard |
topic | Adhesives Kleben (DE-588)4130462-7 gnd Klebstoff (DE-588)4031003-6 gnd Adhäsion (DE-588)4000493-4 gnd |
topic_facet | Adhesives Kleben Klebstoff Adhäsion |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017553455&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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