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Gives an overview of the state of the art of advanced coatings for anticorrosion
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Gives an overview of the state of the art of advanced coatings for anticorrosion
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135386 000
- 1. Auflage
- Seitenzahl: 528
- Erscheinungstermin: 24. April 2024
- Englisch
- Abmessung: 248mm x 175mm x 33mm
- Gewicht: 1152g
- ISBN-13: 9783527353866
- ISBN-10: 3527353860
- Artikelnr.: 69859019
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley.buha@zeitfracht.de
- 06201 6060
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135386 000
- 1. Auflage
- Seitenzahl: 528
- Erscheinungstermin: 24. April 2024
- Englisch
- Abmessung: 248mm x 175mm x 33mm
- Gewicht: 1152g
- ISBN-13: 9783527353866
- ISBN-10: 3527353860
- Artikelnr.: 69859019
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley.buha@zeitfracht.de
- 06201 6060
Lingwei Ma is Associate Professor at University of Science and Technology Beijing, China. Her main research interests include self-healing smart coatings, corrosion inhibitor analysis, and corrosion mechanisms. She is the deputy director of "One Belt and One Road" Southeast Asia Field Scientific Observation and Research Station for Corrosion and Protection of Environmental Materials. Dawei Zhang is Professor at University of Science and Technology Beijing (USTB), China. His research interests are intelligent materials and technologies for corrosion control (e.g. smart protective coatings, microbial corrosion, and AI-driven corrosion research). He serves as Director of Office of International Affairs of USTB, Deputy Director of National Materials Corrosion and Protection Data Center and Associate Director of Beijing Advanced Innovation Center for Materials Genome Engineering. He is an elected Fellow of Association for Materials Protection and Performance and also the Chair of its International Advisory Council. He is also an Editor of the journal Corrosion Science.
1. Fundamentals of Smart Coatings and Corrosion Protection
2. Development of Thermally Activated Self-Healing Coating
3. Development of Photothermally Activated Self-Healing Coating
4. Development of pH and Redox Activated Self-Healing Coating
5. Development of Ion Exchange Activated Self-Healing Coating
6. Development of pH and Metal Ions Responsive Self-Reporting Coating
7. Development of Mechanically Responsive Self-Reporting Coating
8. Development of Weather-Resistant Coating with Self-Healing and Self-Reporting Properties
9. Development of Superhydrophobic Coating with Good Mechanical Durability and Self-Healing Effect
10. Investigation of the Self-Healing Performance of Coatings using Atmospheric Monitor Technique
11. Future Development Direction of Smart Anticorrosive Coatings
2. Development of Thermally Activated Self-Healing Coating
3. Development of Photothermally Activated Self-Healing Coating
4. Development of pH and Redox Activated Self-Healing Coating
5. Development of Ion Exchange Activated Self-Healing Coating
6. Development of pH and Metal Ions Responsive Self-Reporting Coating
7. Development of Mechanically Responsive Self-Reporting Coating
8. Development of Weather-Resistant Coating with Self-Healing and Self-Reporting Properties
9. Development of Superhydrophobic Coating with Good Mechanical Durability and Self-Healing Effect
10. Investigation of the Self-Healing Performance of Coatings using Atmospheric Monitor Technique
11. Future Development Direction of Smart Anticorrosive Coatings
1. Fundamentals of Smart Coatings and Corrosion Protection
2. Development of Thermally Activated Self-Healing Coating
3. Development of Photothermally Activated Self-Healing Coating
4. Development of pH and Redox Activated Self-Healing Coating
5. Development of Ion Exchange Activated Self-Healing Coating
6. Development of pH and Metal Ions Responsive Self-Reporting Coating
7. Development of Mechanically Responsive Self-Reporting Coating
8. Development of Weather-Resistant Coating with Self-Healing and Self-Reporting Properties
9. Development of Superhydrophobic Coating with Good Mechanical Durability and Self-Healing Effect
10. Investigation of the Self-Healing Performance of Coatings using Atmospheric Monitor Technique
11. Future Development Direction of Smart Anticorrosive Coatings
2. Development of Thermally Activated Self-Healing Coating
3. Development of Photothermally Activated Self-Healing Coating
4. Development of pH and Redox Activated Self-Healing Coating
5. Development of Ion Exchange Activated Self-Healing Coating
6. Development of pH and Metal Ions Responsive Self-Reporting Coating
7. Development of Mechanically Responsive Self-Reporting Coating
8. Development of Weather-Resistant Coating with Self-Healing and Self-Reporting Properties
9. Development of Superhydrophobic Coating with Good Mechanical Durability and Self-Healing Effect
10. Investigation of the Self-Healing Performance of Coatings using Atmospheric Monitor Technique
11. Future Development Direction of Smart Anticorrosive Coatings