Brechtl / Saji | High-Entropy Alloy Coatings | Buch | 978-1-032-90750-5 | www.sack.de

Buch, Englisch, 476 Seiten, Format (B × H): 178 mm x 254 mm, Gewicht: 453 g

Brechtl / Saji

High-Entropy Alloy Coatings

Fundamentals and Applications
1. Auflage 2025
ISBN: 978-1-032-90750-5
Verlag: Taylor & Francis Ltd

Fundamentals and Applications

Buch, Englisch, 476 Seiten, Format (B × H): 178 mm x 254 mm, Gewicht: 453 g

ISBN: 978-1-032-90750-5
Verlag: Taylor & Francis Ltd


High-Entropy Alloy Coatings: Fundamentals and Applications is a comprehensive overview of the exciting potential of HEA coatings. This book will cover the fundamentals, fabrication methods, applications, and recent advancements in this field, with concise chapters on each topic written by a team of experts. Part I concentrates on the fundamental principles, while Parts II, III, and IV are dedicated to coating type, fabrication methods, and applications of HEA coatings.

High-entropy alloys (HEAs) consist of multiple (five or higher) principal elements distributed in roughly equal atomic percentages. This makes them well-suited as coating materials for extreme operational conditions. HEA coatings have attracted considerable interest due to their remarkable mechanical and tribological properties and their resistance to high-temperature oxidation, as well as protective coating applications (against corrosion and wear), HEA coatings have diverse applications in several fields, including energy storage and conversion, electrocatalysis, biomedical, and nuclear sectors.

This book is written for senior undergraduate and graduate students, research students, engineers, and researchers in the fields of Materials Science, Mechanical Engineering, Metallurgical Engineering, Corrosion Engineering, Surface Science, and Coating Technologies.

- Offers a dedicated volume on HEA coatings, in distinction to existing books that focus on HEAs in bulk form.

- Provides case studies specific to industries.

- Outlines suitability of HEAs as coating materials for extreme operating environments.

- Details methods for developing HEA coatings, such as laser cladding, physical vapour deposition methods such as sputtering, thermal spraying techniques including plasma spraying, high-velocity oxy-fuel spraying, and cold spraying.

- Considers the nature of the substrate material, coating thickness, and the intended applications.

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Zielgruppe


Academic and Postgraduate

Weitere Infos & Material


Part I. Fundamentals 1. High-entropy alloys – Fundamental and frontiers 2. Mechanistic aspects of high-entropy alloys Part II. HEA coatings 3. Types and fabrication approaches of high-entropy alloy coatings– An Overview 4. Microstructure and mechanical properties of HEA coatings – Role of constituent elements and fabrication approaches 5. Theoretical and computational modelling studies on HEA coatings 6. Design of wear- and corrosion-resistant multi-principal element alloy coatings: Framework and perspectives on Cr–Co–Ni-based coatings 7. Machine learning applied to high-entropy alloy coatings process parameters and composition optimization: a case study Part III. Coating type 8. Metallic high-entropy alloy coatings 9. High-entropy ceramic coatings 10. Composite high-entropy alloy coatings Part IV. Fabrication methods 11. Laser-based methods of high-entropy alloy coating fabrication 12. Thermal and cold spray high-entropy alloy coatings 13. Electrochemical methods of high-entropy alloy coating fabrication 14. Post-processing of high-entropy alloy-based coatings Part V. Applications 15. Anti-wear and anti-friction HEA coatings 16. Anti-corrosion HEA coatings 17. HEA coatings for Tribo-corrosion applications 18. Thermal barrier HEA coatings 19. High-entropy alloy coatings in energy storage and conversion 20. High-entropy ferroelectric ceramics/thin films for capacitor energy storage applications 21. HEA coatings for electrocatalytic applications


Viswanathan S. Saji is a Research Scientist-II at the Interdisciplinary Research Center for Advanced Materials, King Fahd University of Petroleum and Minerals (KFUPM), Saudi Arabia (2022 – present).

Jamieson Brechtl is currently an Associate R&D staff member at Oak Ridge National Laboratory (2023 – present).



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