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Thin Film Coatings: Fundamentals and Advancements [Kõva köide]

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  • Formaat: Hardback, 206 pages, kõrgus x laius: 234x156 mm, kaal: 580 g, 10 Tables, black and white; 57 Line drawings, black and white; 36 Halftones, black and white; 93 Illustrations, black and white
  • Sari: Advanced Materials Processing and Manufacturing
  • Ilmumisaeg: 22-Mar-2026
  • Kirjastus: CRC Press
  • ISBN-10: 1032804505
  • ISBN-13: 9781032804507
  • Formaat: Hardback, 206 pages, kõrgus x laius: 234x156 mm, kaal: 580 g, 10 Tables, black and white; 57 Line drawings, black and white; 36 Halftones, black and white; 93 Illustrations, black and white
  • Sari: Advanced Materials Processing and Manufacturing
  • Ilmumisaeg: 22-Mar-2026
  • Kirjastus: CRC Press
  • ISBN-10: 1032804505
  • ISBN-13: 9781032804507

This book provides a thorough overview of the fundamental principles, design strategies, fabrication techniques, characterization methods, and diverse applications of thin films and advancements therein. With a balance between theoretical concepts, practical applications, and computational techniques, the book offers a holistic understanding of the subject matter, paving the way for students, researchers, and engineers to navigate the fabrication and characterization of thin films backed by real-world examples.

• Covers optimization of coatings tailored to specific applications, coupled with their industry-focused approach that incorporates real-world examples
• Discusses thin films in detail, including a thorough examination of deposition and analysis methods
• Explores emerging topics related to the endurance of coatings, highlighting green technologies and life cycle assessment
• Reviews the incorporation of machine learning and evolutionary algorithms for thin film optimization
• Delves into current innovations, recent models, and substantial research, with a focus on practical use cases

This book is aimed at researchers and graduate students in materials science, characterization, and thin films.



This book provides a thorough overview of the fundamental principles, design strategies, fabrication techniques, characterization methods, and diverse applications of thin films and advancements therein with a balance between theoretical concepts, practical applications and computational techniques.

Chapter 1: An Overview of Thin-Film Coating Technologies

Chapter 2: Advanced Deposition Techniques and Industrial Applications of Thin
Films

Chapter 3: Advances in Synthesis, Mechanical Properties, and Corrosion
Resistance of Metallic Glass Coatings

Chapter 4: Defects in Thin Films- Part I

Chapter 5: Defects in Thin Films- Part II

Chapter 6: Hydrophobicity and Hydrophilicity in thin films: Natures
inspiration to application

Chapter 7: Spray pyrolysis deposition of thin films-A comprehensive review

Chapter 8: Application of Smart Coatings in Aerospace and Oil and Gas
Sectors

Chapter 9: Evaluation of the mechanical performance of TiN thin film Cr and
CrN interlayer

Chapter 10: Structural and Physiomechanical evaluation of AlCr(Si)N thin
films Coatings

Chapter 11: Anti-wear and bacterial adhesion properties of Si doped AlCrN
thin films for biomedical application

Chapter 12: Multi-Scale Signal and Machine LearningDriven Classification of
Wear Regimes in Si-DLC/CFR-PEEK Tribosystems under Dry Sliding Conditions
Lokeswar Patnaik is an Assistant Professor (Grade II) in the Department of Mechanical and Manufacturing Engineering at the National Institute of Advanced Manufacturing Technology (NIAMT), Ranchi, India. He obtained his PhD in Mechanical Engineering from the National Institute of Technology, Silchar,India, where his research focused on advanced materials and tribology, following an M.E. from Osmania University, India and a B.Tech from NIT Silchar. His research interests lie in surface engineering, thin films, mechanical characterization, and the tribological performance of materials. He has published widely in peer-reviewed journals and has also secured several patents on innovative machine designs, polishing attachments, and material testing devices.

Sunil Kumar is an Assistant Professor (Senior Grade) in the Department of Mechanical Engineering at the Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Chennai campus, India. He holds a Diploma, B.Tech, M.E., and Ph.D. in Mechanical Engineering, and has cultivated academic and professional experience through both teaching and industry engagements. His research interests include surface modification, thin films, tribology, additive manufacturing of tool steels, machining of hard materials, as well as advanced methodologies such as multi-criteria decision-making, optimization, and fuzzy systems. He has published extensively in reputed journals, contributed book chapters, and actively reviews for international scientific journals. Dr. Kumar is also an inventor, holding multiple Indian patents that reflect his focus on practical innovation in mechanical engineering and manufacturing technologies.

Magdalena picka is an Assistant Professor at the Department of Materials and Production Engineering in the Faculty of Mechanical Engineering at Biaystok University of Technology, Poland. She completed her postdoctoral fellowship in the Nanodevices Research Group at the International Iberian Nanotechnology Laboratory in Braga, Portugal, before advancing through teaching and research roles at her current institution. Her research focuses on tribology, surface engineering, and the performance of advanced materials, with applications spanning composites, coatings, and dental biomaterials. She has authored numerous peer-reviewed publications on topics such as functional fillers in glass-ionomer cements and the effects of hydrothermal fatigue on restorative dental materials. In recognition of her innovative work, Dr. picka received nearly PLN 1.3 million in funding from the National Science Centre under the prestigious SONATA 20 competition to advance her research. Beyond her academic contributions, she serves as a topic and guest editor for various reputed journals.

Saikat Ranjan Maity is an Associate Professor in the Department of Mechanical Engineering at the National Institute of Technology (NIT) Jamshedpur, India, and is also associated with NIT Silchar, India. He holds a PhD in Engineering from Jadavpur University, India, along with an M.Tech. in Materials Engineering and a B.Tech. in Production Engineering. Dr. Maitys academic and research career spans advanced manufacturing processes, industrial engineering, materials science, optimisation, and the application of decision-making and soft computing techniques in engineering problems. He has published extensively in reputed international journals, conferences, and edited volumes, contributing significantly to the field of mechanical and production engineering. Before joining NIT Silchar, he worked as a Lecturer and later Assistant Professor at the Haldia Institute of Technology and also served as a Research Scientist on a collaborative project sponsored by the Ministry of Steel and TATA Steel, focusing on fatigue behaviour of welded and bonded high-strength steel joints.