Mittal | Contact Angle, Wettability Vol | Buch | 978-1-119-59254-9 | www.sack.de

Buch, Englisch, 348 Seiten, Format (B × H): 157 mm x 235 mm, Gewicht: 652 g

Mittal

Contact Angle, Wettability Vol


1. Auflage 2019
ISBN: 978-1-119-59254-9
Verlag: John Wiley & Sons

Buch, Englisch, 348 Seiten, Format (B × H): 157 mm x 235 mm, Gewicht: 652 g

ISBN: 978-1-119-59254-9
Verlag: John Wiley & Sons


This is the fourth volume in the series "Advances in Contact Angle, Wettability and Adhesion" initiated to consolidate information and provide commentary on certain recent research aspects dealing with this important topic. Its predecessor Volumes 1, 2 and 3 were published in 2013, 2015 and 2018 respectively.

This new book comprising 14 research and review articles is divided into four parts: Part 1: Contact Angle and Wettability Aspects;

Part 2: Surface Free Energy and Surface Tension Determination; Part 3: Applied Aspects. The topics covered include:

- Contact Angle Determination of Talc Powders from Heat of Immersion
- Surface Wetting at Macro and Nanoscale
- Wettability of Wood Surfaces with Waterborne Acrylic Lacquer Stains Modulated by DBD Plasma Treatment in Air at Atmospheric Pressure
- Wettability of Ultrafiltration Membranes

- Determination of the Surface Free Energy of Solid Surfaces: Can the Best Model be Found
- Surface Free Energy Characterization of Talc Powders
- Determination of the Surface Free Energy of Skin and the Factors Affecting it by the Contact Angle Method
- Determination of Surface Tension Components of Aqueous Solutions using Fomblin HC/25 R Perfluoropolyether Liquid Film as a Solid Substrate
- Enhancing the Wettability of Polybenzimidazole (PBI) to Improve Fuel Cell Performance
- Evaluation of Sebum Resistance for Long-Wear Face Make-Up Products Using Contact Angle Measurements
- Contact Angle Hysteresis of Pressure-Sensitive Adhesives due to Adhesion Tension Relaxation
- The Potential of Surface Nano-Engineering and Superhydrophobic Surfaces in Drag Reduction
- Laser Surface Engineering of Polymeric Materials for Enhanced Mesenchymal Stem Cell Adhesion and Growth
- Sisal-Green Resin Interfaces in Green Composites.

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Weitere Infos & Material


Preface xiii

1 Contact Angle Determination of Talc Powders from Heat of Immersion 1
Ismail Yildirim and Roe-Hoan Yoon

1.1 Introduction 1
1.2 Theoretical Background 3
1.3 Experimental 5
1.4 Results and Discussion 7
1.5 Summary 15

2 Surface Wetting at Macro and Nanoscale 17
Meenakshi Annamalai, Saurav Prakash, Siddhartha Ghosh, Abhijeet Patra and T. Venkatesan

2.1 Introduction 17
2.2 Intrinsic Wetting Properties of REOs 20
2.3 Nanoscale Approach to Measuring Wettability 25
2.4 On the Nature of Wettability of van der Waals Heterostructures 28
2.5 Summary 33

3 Wettability of Wood Surfaces with Waterborne Acrylic Lacquer Stains Modulated by DBD Plasma Treatment in Air at Atmospheric Pressure 41
Jure Zigon, Marko Petriè and Sebastian Dahle

3.1 Introduction 41
3.2 Materials and Methods 43
3.3 Results and Discussion 47
3.4 Summary and Conclusions 53

4 Wettability of Ultrafiltration Membranes 57
Konrad Terpilowski, Malgorzata Bielska, Krystyna Prochaska and Emil Chibowski

4.1 Introduction 57
4.2 Apparent Surface Free Energy Determination 58
4.3 Experimental 60
4.4 Results and Discussion 61
4.5 Conclusions 70

5 Determination of the Surface Free Energy of Solid Surfaces: Can the Best Model be Found 73
Frank M. Etzler

5.1 Introduction 74
5.2 The Present Study 82
5.3 Data Analysis 86
5.4 Summary and Conclusions 95

6 Surface Free Energy Characterization of Talc Particles 99
Ismail Yildirim and Roe-Hoan Yoon

6.1 Introduction 99
6.2 Theoretical Background 100
6.3 Experimental 104
6.4 Results and Discussion 106
6.5 Summary and Conclusions 112

7 Determination of the Surface Free Energy of Skin and the Factors Affecting it by the Contact Angle Method 115
Davide Rossi and Antonio Bettero

7.1 Introduction 116
7.2 Experimental 118
7.3 Results and Discussion 125
7.4 Summary and Conclusions 139

8 Determination of Surface Tension Components of Aqueous Solutions Using Fomblin HC/25® Perfluoropolyether Liquid Film as a Solid Substrate 145
D. Rossi, S. Rossi and N. Realdon

8.1 Introduction 146
8.2 Materials Used 151
8.3 Fomblin HC-25 Perfluoropolyether Liquid Film Preparation (Solid-Like Methodology) 153
8.4 Determination of Surface Free Energy (SFE) 153
8.5 Analysis of Correlations 170
8.6 Summary and Conclusions 171
8.7 Acknowledgements 174

9 Enhancing the Wettability of Polybenzimidazole (PBI) to Improve Fuel Cell Performance 179
Katerine Vega, Matthew Cocca, Han Le, Marc Toro, Anthony Garcia, Andrew Fleischer, Alla Bailey, Joel Shertok, Michael Mehan, Surendra K. Gupta and Gerald A. Takacs

9.1 Introduction 180
9.2 Experimental 181
9.3 Results and Discussion 183
9.4 Discussion 188
9.5 Conclusions 189

10 Evaluation of Sebum Resistance for Long-Wear Face Make-Up Products Using Contact Angle Measurements 193
Hy Si Bui, Mariko Hasebe and Jody Ebanks

10.1 Introduction 193
10.2 Experiments 196
10.3 Results and Discussion 198
10.4 Contact Angles of Foundations with Water 207
10.5 Contact Angles of Foundations with Sebum 209
10.6 Effect of Sebum on Color Transfer and Film Integrity 214
10.7 Summary and Prospects 215

11 Contact Angle Hysteresis of Pressure Sensitive Adhesives due to Adhesion Tension Relaxation 223
Naoto Shiomura, Takashi Sekine and Dehua Yang

11.1 Introduction 223
11.2 Theoretical Background 224
11.3 Experimental 228
11.4 Results and Discussion 230
11.5 Conclusion 236

12 The Potential of Surface Nano-Engineering and Superhydrophobic Surfaces in Drag Reduction 239
Ali Shahsavari, Amir Nejat and Seyed Farshid Chini

12.1 Introduction 241
12.2 Parameters Affecting the Slip Length 246
12.3 Slip Length Measurement on Superhydrophobic Surfaces 249
12.4 Drag Reduction of Superhydrophobic Surfaces 250
12.5 Effect of Superhydrophobicity on External Flow 252
12.6 Conclusion 258

13 Laser Surface Engineering of Polymeric Materials for Enhanced Mesenchymal Stem Cell Adhesion and Growth 267
D.G. Waugh, D. Cosgrove, I. Hussain and J. Lawrence

13.1 Introduction 268
13.2 Mesenchymal Stem Cells (MSCs) 269
13.3 Poly(ether ether ketone) 273
13.4 Laser Surface Engineering 274
13.5 CO2 Laser Surface Engineering of Poly(ether ether ketone) 277
13.6 Effects of CO2 Laser Surface Engineering on Surface Parameters of Poly(ether ether ketone) 283
13.7 Effects of CO2 Laser Surface Engineering on Mesenchymal Stem Cell Response to Poly(ether ether ketone) 285
13.8 Poly(ether ether ketone) and other Polymers as Bio-Composite Materials 286
13.9 Summary 290

14 Sisal-Green Resin Interfaces in Green Composites 299
A. N. Netravali

14.1 Introduction 299
14.2 Sustainable 'Green' Composites 301
14.3 Sisal Fiber Composites 302
14.4 Fiber/Resin Interface 30
14.4.1 Sisal/Green Resin Interface Strength 305
14.5 Modification of Cellulosic Fibers for Enhancing Fiber/Resin Interfacial Bonding 307
14.6 Summary 311

Index 319


Kashmiri Lal Mittal was employed by the IBM Corporation from 1972 through 1993. Currently, he is teaching and consulting worldwide in the broad areas of adhesion as well as surface cleaning. He has received numerous awards and honors including the title of doctor honoris causa from Maria Curie-Skodowska University, Lublin, Poland. He is the editor of more than 130 books dealing with adhesion measurement, adhesion of polymeric coatings, polymer surfaces, adhesive joints, adhesion promoters, thin films, polyimides, surface modification surface cleaning, and surfactants. Dr. Mittal is also the Founding Editor of the journal Reviews of Adhesion and Adhesives.



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