Wetting of Real Surfaces:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Boston
De Gruyter
[2019]
|
Ausgabe: | 2nd edition |
Schriftenreihe: | De Gruyter Studies in Mathematical Physics
19 |
Schlagworte: | |
Online-Zugang: | http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110581065&searchTitles=true https://www.degruyter.com/doc/cover/9783110581065.jpg Inhaltsverzeichnis |
Beschreibung: | Mit Literaturangaben und Index |
Beschreibung: | XIX, 178 Seiten Illustrationen, Diagramme 24 cm x 17 cm |
ISBN: | 9783110581065 311058106X |
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Datensatz im Suchindex
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adam_text | CONTENTS
PREFACE TO THE SECOND EDITION * VII
PREFACE TO THE FIRST EDITION * IX
SYMBOL INDEX* XI
1 WHAT IS SURFACE TENSION? * 1
1.1 SURFACE TENSION AND ITS DEFINITION * 1
1.2 PHYSICAL ORIGIN OF THE SURFACE TENSION OF LIQUIDS * 2
1.3 TEMPERATURE DEPENDENCE OF THE SURFACE TENSION * 5
1.4 SURFACTANTS * 5
1.5 THE LAPLACE PRESSURE * 6
1.6 SURFACE TENSION OF SOLIDS * 8
1.7 VALUES OF SURFACE TENSIONS OF SOLIDS * 8
ADDITIONAL READING * 9
APPENDIX 1A. THE SHORT-RANGE NATURE OF INTERMOLECULAR FORCES *
APPENDIX IB. THE LAPLACE PRESSURE FROM SIMPLE REASONING * 10
BULLETS * 11
REFERENCES * 11
2 WETTING OF IDEAL SURFACES * 13
2.1 WHAT IS WETTING? THE SPREADING PARAMETER * 13
2.2 THE YOUNG EQUATION * 14
2.3 WETTING OF FLAT, HOMOGENEOUS, CURVED SURFACES * 17
2.4 LINE TENSION * 19
2.5 DISJOINING PRESSURE * 20
2.6 WETTING OF AN IDEAL SURFACE: INFLUENCE OF ABSORBED LIQUID LAYERS
AND THE LIQUID VAPOR * 22
2.7 GRAVITY AND WETTING OF IDEAL SURFACES: A DROPLET SHAPE
AND LIQUID PUDDLES * 24
2.8 THE SHAPE OF THE DROPLET AND THE DISJOINING PRESSURE * 26
2.9 DISTORTION OF DROPLETS BY AN ELECTRIC FIELD * 27
2.10 CAPILLARY RISE * 29
2.11 THE SHAPE OF A DROPLET WETTING A FIBER* 31
2.12 WETTING AND ADHESION: THE YOUNG-DUPRE EQUATION * 33
2.13 WETTING TRANSITIONS ON IDEAL SURFACES * 33
2.14 HOW IS THE SURFACE TENSION MEASURED? * 35
2.14.1 THE DU NOLLY RING AND THE WILHELMY PLATE METHODS * 35
2.14.2 THE PENDANT DROP METHOD * 36
2.14.3 MAXIMUM BUBBLE PRESSURE METHOD * 37
2.14.4 DYNAMIC METHODS OF THE MEASUREMENT OF SURFACE TENSION * 38
2.15 MEASUREMENT OF THE SURFACE TENSION OF SOLIDS * 40
ADDITIONAL READING * 41
APPENDIX 2A. TRANSVERSALITY CONDITIONS * 41
APPENDIX 26. ZISMAN PLOT
-----
42
APPENDIX 2C. ANTONOFF*S RULE * 43
BULLETS
-----
43
REFERENCES * 44
ADDITIONAL READING * 46
3 CONTACT ANGLE HYSTERESIS * 47
3.1 CONTACT ANGLE HYSTERESIS: ITS SOURCES AND MANIFESTATIONS * 47
3.2 CONTACT ANGLE HYSTERESIS ON SMOOTH HOMOGENEOUS SUBSTRATES * 49
3.3 STRONGLY AND WEAKLY PINNING SURFACES * 50
3.4 QUALITATIVE CHARACTERIZATION OF THE PINNING OF THE TRIPLE LINE * 53
3.5 THE ZERO EVENTUAL CONTACT ANGLE OF EVAPORATED DROPLETS
AND ITS EXPLANATION * 55
3.6 CONTACT ANGLE HYSTERESIS AND LINE TENSION * 55
3.7 MORE PHYSICAL REASONS FOR CONTACT ANGLE HYSTERESIS ON SMOOTH
IDEAL SURFACES * 56
3.8 CONTACT ANGLE HYSTERESIS ON CHEMICALLY HETEROGENEOUS SMOOTH
SURFACES:
THE PHENOMENOLOGICAL APPROACH. ACQUAINTANCE WITH THE APPARENT
CONTACT ANGLE * 57
3.9 THE PHENOMENOLOGICAL APPROACH TO THE HYSTERESIS OF THE CONTACT ANGLE
DEVELOPED BY VEDANTAM AND PANCHAGNULA * 59
3.10 THE MACROSCOPIC APPROACH TO CONTACT ANGLE HYSTERESIS, THE MODEL
OF JOANNY AND DE GENNES * 60
3.10.1 ELASTICITY OF THE TRIPLE LINE * 60
3.10.2 CONTACT ANGLE HYSTERESIS IN THE CASE OF A DILUTE SYSTEM OF
DEFECTS * 61
3.10.3 SURFACES WITH DENSE DEFECTS AND THE FINE STRUCTURE
OF THE TRIPLE LINE * 62
3.11 DEFORMATION OF THE SUBSTRATE AS AN ADDITIONAL SOURCE
OF CONTACT ANGLE HYSTERESIS * 63
3.12 HOW CONTACT ANGLE HYSTERESIS CAN BE MEASURED * 65
3.13 ROUGHNESS OF THE SUBSTRATE AND CONTACT ANGLE HYSTERESIS * 66
3.14 USE OF MACROSCOPIC CONTACT ANGLES FOR CHARACTERIZATION
OF SOLID SURFACES * 67
ADDITIONAL READING
-----
68
APPENDIX 3A. A DROPLET ON AN INCLINED PLANE * 68
BULLETS * 70
REFERENCES * 71
ADDITIONAL READING * 73
CONTENTS * X V II
4
4.1
4.2
4.3
4.4
4.5
4.6
4.7
4.8
4.9
4.10
4.11
5
5.1
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
5.10
5.11
5.12
DYNAMICS OF WETTING* 75
THE DYNAMIC CONTACT ANGLE * 75
THE DYNAMICS OF WETTING: THE APPROACH OF VOINOV * 75
THE DYNAMIC CONTACT ANGLE IN A SITUATION OF COMPLETE WETTING * 77
DISSIPATION OF ENERGY IN THE VICINITY OF THE TRIPLE LINE * 78
DISSIPATION OF ENERGY AND THE MICROSCOPIC CONTACT ANGLE * 79
A MICROSCOPIC APPROACH TO THE DISPLACEMENT OF THE TRIPLE LINE * 80
SPREADING OF DROPLETS: TANNER*S LAW * 81
SUPERSPREADING * 81
DYNAMICS OF THE FILLING OF CAPILLARY TUBES * 82
THE DRAG-OUT PROBLEM * 83
DYNAMIC WETTING OF HETEROGENEOUS SURFACES * 85
ADDITIONAL READING * 86
BULLETS
-----
86
REFERENCES * 86
ADDITIONAL READING * 87
WETTING OF ROUGH AND CHEMICALLY HETEROGENEOUS SURFACES:
THE WENZEL AND CASSIE MODELS * 89
GENERAL REMARKS * 89
THE WENZEL MODEL * 89
WENZEL WETTING OF CHEMICALLY HOMOGENEOUS CURVED
ROUGH SURFACES * 91
THE CASSIE-BAXTER WETTING MODEL * 93
THE ISRAELACHVILI AND GEE CRITICISM OF THE CASSIE-BAXTER MODEL * 94
CASSIE-BAXTER WETTING IN A SITUATION WHERE A DROPLET PARTIALLY SITS
ON AIR * 95
THE CASSIE-BAXTER WETTING OF CURVED SURFACES * 97
CASSIE-BAXTER IMPREGNATING WETTING * 98
THE IMPORTANCE OF THE AREA ADJACENT TO THE TRIPLE LINE IN THE WETTING
OF ROUGH AND CHEMICALLY HETEROGENEOUS SURFACES * 99
WETTING OF GRADIENT SURFACES * 103
THE MIXED WETTING STATE * 104
CONSIDERING THE LINE TENSION * 105
APPENDIX 5A. ALTERNATIVE DERIVATION OF THE YOUNG, CASSIE, AND WENZEL
EQUATIONS * 107
BULLETS * 109
REFERENCES * 110
ADDITIONAL READING * 111
6
6.1
6.2
6.3
6.4
6.5
6.6
6.7
7
7.1
7.2
7.3
7.4
7.4.1
7.4.2
7.5
7.6
7.7
7.8
7.8.1
7.8.2
7.8.3
7.9
8
8.1
8.2
8.3
SUPERHYDROPHOBICITY, SUPERHYDROPHILICITY, AND THE ROSE PETAL EFFECT *
113
SUPERHYDROPHOBICITY* 113
SUPERHYDROPHOBICITY AND THE CASSIE-BAXTER WETTING REGIME * 114
WETTING OF HIERARCHICAL RELIEFS: APPROACH OF HERMINGHAUS * 115
WETTING OF HIERARCHICAL STRUCTURES: A SIMPLE EXAMPLE * 116
SUPEROLEOPHOBICITY* 118
THE ROSE PETAL EFFECT * 119
SUPERHYDROPHILICITY
-----
121
ADDITIONAL READING * 122
BULLETS
-----
122
REFERENCES * 122
ADDITIONAL READING * 124
WETTING TRANSITIONS ON ROUGH SURFACES * 125
GENERAL REMARKS
-----
125
WETTING TRANSITIONS ON ROUGH SURFACES: EXPERIMENTAL DATA * 126
TIME-SCALING OF WETTING TRANSITIONS * 127
ORIGIN OF THE BARRIER SEPARATING THE CASSIE AND WENZEL WETTING STATES:
THE CASE OF HYDROPHOBIC SURFACES
-----
128
THE COMPOSITE WETTING STATE * 128
ENERGY BARRIERS AND CASSIE, WENZEL, AND YOUNG CONTACT ANGLES * 130
CRITICAL PRESSURE NECESSARY FOR WETTING TRANSITION * 132
WETTING TRANSITIONS AND DE-PINNINGOF THE TRIPLE LINE; THE DIMENSION
OF A WETTING TRANSITION * 133
THE EXPERIMENTAL EVIDENCE FOR THE ID SCENARIO
OF WETTING TRANSITIONS * 136
WETTING TRANSITIONS ON HYDROPHILIC SURFACES * 137
CASSIE WETTING OF INHERENTLY HYDROPHILIC SURFACES:
CRITERIA FOR GAS ENTRAPPING * 137
ORIGIN OF THE ENERGETIC BARRIER SEPARATING CASSIE AND WENZEL WETTING
REGIMES ON HYDROPHILIC SURFACES
-----
138
SURFACES BUILT OF ENSEMBLES OF BALLS * 140
MECHANISMS OF WETTING TRANSITIONS: THE DYNAMICS
-----
142
ADDITIONAL READING * 143
BULLETS
-----
143
REFERENCES * 144
ADDITIONAL READING * 146
ELECTROWETTING AND WETTING IN THE PRESENCE OF EXTERNAL FIELDS * 147
GENERAL REMARKS * 147
ELECTROWETTING* 147
WETTING IN THE PRESENCE OF EXTERNAL FIELDS: A GENERAL CASE * 148
ADDITIONAL READING * 150
BULLETS * 150
REFERENCES * 150
ADDITIONAL READING * 151
9 NONSTICK DROPLETS * 153
9.1 GENERAL REMARKS * 153
9.2 LEIDENFROST DROPLETS * 153
9.3 LIQUID MARBLES * 155
9.3.1 WHAT ARE LIQUID MARBLES? * 155
9.3.2 LIQUID MARBLE-SUPPORT INTERFACE * 157
9.3.3 LIQUID MARBLE-VAPOR INTERFACE * 157
9.3.4 EFFECTIVE SURFACE TENSION OF LIQUID MARBLES * 158
9.3.5 SCALING LAWS GOVERNING THE SHAPE OF LIQUID MARBLES * 159
9.3.6 PROPERTIES OF LIQUID MARBLES: THE DYNAMICS * 160
9.3.7 ACTUATION OF LIQUID MARBLES WITH ELECTRIC AND MAGNETIC FIELDS *
161
9.3.8 APPLICATIONS OF LIQUID MARBLES * 162
9.4 NONSTICK DROPS BOUNCING IN A FLUID BATH * 162
ADDITIONAL READING * 163
BULLETS * 163
REFERENCES * 164
ADDITIONAL READING * 165
10 WETTING OF LUBRICATED SURFACES * 167
10.1 GENERAL REMARKS * 167
10.2 CAPILLARITY-INSPIRED EFFECTS ON WET (LUBRICATED), FLAT,
SOLID SURFACES * 167
10.2.1 THE EFFECT OF WETTABILITY ON THE TRIBOLOGY OF IDEAL
LUBRICATED SURFACES * 167
10.2.2 IMPACT OF DROPLETS: COLLISION WITH WET, FLAT SUBSTRATES * 167
10.3 WETTING OF IMPREGNATED (INFUSED), SOLID, ROUGH SUBSTRATES * 168
10.4 IMPACT OF WATER DROPLETS ON OIL-INFUSED SURFACES * 170
10.5 ELECTROWETTING OF LUBRICATED SURFACES * 170
BULLETS * 171
REFERENCES * 171
11 REACTIVE WETTING* 173
11.1 GENERAL REMARKS * 173
11.2 KINETICS OF REACTIVE WETTING* 173
BULLETS * 175
REFERENCES * 175
INDEX * 177
|
any_adam_object | 1 |
author | Bormashenḳo, Edṿard 1962- |
author_GND | (DE-588)1089803478 |
author_facet | Bormashenḳo, Edṿard 1962- |
author_role | aut |
author_sort | Bormashenḳo, Edṿard 1962- |
author_variant | e b eb |
building | Verbundindex |
bvnumber | BV045299008 |
classification_rvk | UP 7700 |
ctrlnum | (OCoLC)1073188563 (DE-599)DNB1162289767 |
discipline | Physik |
edition | 2nd edition |
format | Book |
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id | DE-604.BV045299008 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:14:13Z |
institution | BVB |
institution_GND | (DE-588)10095502-2 |
isbn | 9783110581065 311058106X |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-030686184 |
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owner | DE-19 DE-BY-UBM DE-1051 |
owner_facet | DE-19 DE-BY-UBM DE-1051 |
physical | XIX, 178 Seiten Illustrationen, Diagramme 24 cm x 17 cm |
publishDate | 2019 |
publishDateSearch | 2019 |
publishDateSort | 2019 |
publisher | De Gruyter |
record_format | marc |
series | De Gruyter Studies in Mathematical Physics |
series2 | De Gruyter Studies in Mathematical Physics |
spelling | Bormashenḳo, Edṿard 1962- Verfasser (DE-588)1089803478 aut Wetting of Real Surfaces Edward Yu. Bormashenko 2nd edition Berlin ; Boston De Gruyter [2019] © 2019 XIX, 178 Seiten Illustrationen, Diagramme 24 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier De Gruyter Studies in Mathematical Physics 19 Mit Literaturangaben und Index Benetzung (DE-588)4005493-7 gnd rswk-swf Benetzung (DE-588)4005493-7 s DE-604 Walter de Gruyter GmbH & Co. KG (DE-588)10095502-2 pbl Erscheint auch als 9783110583151 Erscheint auch als Online-Ausgabe, PDF 978-3-11-058314-4 Erscheint auch als Online-Ausgabe, EPUB 978-3-11-058118-8 De Gruyter Studies in Mathematical Physics 19 (DE-604)BV040141722 19 X:MVB http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110581065&searchTitles=true X:MVB https://www.degruyter.com/doc/cover/9783110581065.jpg DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030686184&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Bormashenḳo, Edṿard 1962- Wetting of Real Surfaces De Gruyter Studies in Mathematical Physics Benetzung (DE-588)4005493-7 gnd |
subject_GND | (DE-588)4005493-7 |
title | Wetting of Real Surfaces |
title_auth | Wetting of Real Surfaces |
title_exact_search | Wetting of Real Surfaces |
title_full | Wetting of Real Surfaces Edward Yu. Bormashenko |
title_fullStr | Wetting of Real Surfaces Edward Yu. Bormashenko |
title_full_unstemmed | Wetting of Real Surfaces Edward Yu. Bormashenko |
title_short | Wetting of Real Surfaces |
title_sort | wetting of real surfaces |
topic | Benetzung (DE-588)4005493-7 gnd |
topic_facet | Benetzung |
url | http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110581065&searchTitles=true https://www.degruyter.com/doc/cover/9783110581065.jpg http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030686184&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV040141722 |
work_keys_str_mv | AT bormashenkoedvard wettingofrealsurfaces AT walterdegruytergmbhcokg wettingofrealsurfaces |