This book provides an in-depth exploration of high entropy materials (HEMs) as coatings, looking at their fundamentals, synthesis methods, properties, and industrial applications. HEM-based coatings offer remarkable potential for next-generation structural components due to their tunable physical and chemical properties, including enhanced hardness, wear resistance, corrosion resistance, and thermal stability.
Covering both high entropy alloys (HEAs) and high entropy ceramics (HECs), this book offers a comprehensive guide to their processing, characterization, and industrial uses in fields such as aerospace, automotive, and energy. Key topics include advanced synthesis methods, thermal and environmental barrier coatings, tribological properties, failure mechanisms, and the role of machine learning in optimizing HEM-based coatings.
Written by leading experts, this book bridges the gap between fundamental research and industrial applications, providing scholars, researchers, and industry professionals with a valuable reference for advancing the field of high entropy material-based coatings.
This book provides an in-depth exploration of high entropy materials (HEMs) as coatings, looking at their fundamentals, synthesis methods, properties, and industrial applications. HEM-based coatings offer remarkable potential for next-generation structural components due to their tunable physical and chemical properties, including enhanced hardness, wear resistance, corrosion resistance, and thermal stability.
Covering both high entropy alloys (HEAs) and high entropy ceramics (HECs), this book offers a comprehensive guide to their processing, characterization, and industrial uses in fields such as aerospace, automotive, and energy. Key topics include advanced synthesis methods, thermal and environmental barrier coatings, tribological properties, failure mechanisms, and the role of machine learning in optimizing HEM-based coatings.
Written by leading experts, this book bridges the gap between fundamental research and industrial applications, providing scholars, researchers, and industry professionals with a valuable reference for advancing the field of high entropy material-based coatings.
Kamalan Kirubaharan Amirtharaj Mosas
Thermal Barrier Coatings for Aerospace High Entropy Ceramics for Wear Resistance Synthesis Techniques for HEM Coatings Tribological Properties of High Entropy Coatings Environmental Barrier Coatings for Energy Systems Microstructural Characterization of HEMs Laser Processed High Entropy Coatings Plasma Sprayed Thermal Barrier Coatings Machine Learning in Coating Optimization Failure Mechanisms in Ceramic Coatings PVD-Based High Entropy Alloy Coatings Oxidation Resistant Coatings for Metals HEC-Based Advanced Surface Treatments Aerospace and Automotive Coating Applications Advanced Techniques in Coating Synthesis