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Thermal Barrier Coatings: Failure Theory and Evaluation Technology

ISBN-13: 9789811927225 / Angielski / Twarda / 2022 / 934 str.

Yichun Zhou; Li Yang; Wang Zhu
Thermal Barrier Coatings: Failure Theory and Evaluation Technology Yichun Zhou Li Yang Wang Zhu 9789811927225 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Thermal Barrier Coatings: Failure Theory and Evaluation Technology

ISBN-13: 9789811927225 / Angielski / Twarda / 2022 / 934 str.

Yichun Zhou; Li Yang; Wang Zhu
cena 605,23 zł
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This book highlights the failure theories and evaluation techniques of thermal barrier coatings, covering the thermal-mechanical–chemical coupling theories, performance and damage characterization techniques, and related evaluations. Thermal barrier coatings are the key thermal protection materials for high-temperature components in advanced aeroengines. Coating spallation is a major technical bottleneck faced by researchers. The extremely complex microstructure, diverse service environments, and failure behaviors bring challenges to the spallation analysis in terms of the selective use of mechanical theories, experimental methods, and testing platforms. In the book, the authors provide a systematic summary of the latest research and technological advances and present their insights and findings in the past couple of decades. This book is not only suitable for researchers and engineers in thermal barrier coatings and related fields but also a good reference for upper-undergraduate and postgraduate students of materials science and mechanics majors.

This book highlights the failure theories and evaluation techniques of thermal barrier coatings, covering the thermal-mechanical–chemical coupling theories, performance and damage characterization techniques, and related evaluations. Thermal barrier coatings are the key thermal protection materials for high-temperature components in advanced aeroengines. Coating spallation is a major technical bottleneck faced by researchers. The extremely complex microstructure, diverse service environments, and failure behaviors bring challenges to the spallation analysis in terms of the selective use of mechanical theories, experimental methods, and testing platforms. In the book, the authors provide a systematic summary of the latest research and technological advances and present their insights and findings in the past couple of decades. This book is not only suitable for researchers and engineers in thermal barrier coatings and related fields but also a good reference for upper-undergraduate and postgraduate students of materials science and mechanics majors.

Kategorie:
Nauka, Fizyka
Kategorie BISAC:
Science > Termodynamika
Technology & Engineering > Materials Science - Thin Films, Surfaces & Interfaces
Science > Physics - Condensed Matter
Wydawca:
Springer
Język:
Angielski
ISBN-13:
9789811927225
Rok wydania:
2022
Dostępne języki:
Ilość stron:
934
Oprawa:
Twarda

Chapter 0 Introduction

Chapter 1 The basic theoretical framework of thermal-mechanical-chemical coupling of thermal barrier coatings
Chapter 2 Nonlinear finite element method for thermal barrier coatings coated on a turbine blade 
Chapter 3 Geometric nonlinear theory of interface oxidation of thermal barrier coatings
Chapter 4 Physical nonlinearity coupling growth and failure of interface oxidation of thermal barrier coatings
Chapter 5 Thermal-mechanical-chemical coupling of thermal barrier coatings corroded by CMAS
Chapter 6 Erosion failure mechanism of thermal barrier coatings
Chapter 7 Characterization of mechanical properties of thermal barrier coatings
Chapter 8 Characterization of fracture toughness of thermal barrier coatings
Chapter 9 Residual stress of thermal barrier coatings
Chapter 10 Real-time detection of cracks in thermal barrier coatings by acoustic emission method
Chapter 11 Characterization of microstructure evolution of thermal barrier coatings by impedance spectroscopy
Chapter 12 Non-destructive detection of surface and interface damage and internal pores of thermal barrier coatings
Chapter 13 Thermal insulation effect of thermal barrier coatings coated on turbine blade
Chapter 14 Reliability assessment of thermal barrier coatings
Chapter 15 Environmental simulator of thermal barrier coatings

Dr. Yichun Zhou is Professor in the School of Advanced Materials and Nanotechnology, Xidian University. He received his Ph.D. in mechanics in the Institute of Mechanics, Chinese Academy of Sciences, 1994. He also serves as Chairman of the 7th Physical Mechanics Committee of Chinese Society of Theoretical and Applied Mechanics and Standing Council Member of Chinese Materials Research Society. His research focuses on failure mechanics of thermal barrier coatings and the preparation and performance of ferroelectric memory. He received the National Science Fund for Distinguished Young Scholars of China in 2005.

Dr. Li Yang is Professor of the School of Advanced Materials and Nanotechnology, Xidian University. She serves as Vice Chairman of the 8th Physical Mechanics Committee of Chinese Society of Theoretical and Applied Mechanics, and Standing Council Member and Vice Secretary General of Youth Committee of Chinese Materials Research Society. Her research focuses on the design, preparation and mechanical behaviour study of high-/ultrahigh-temperature coatings for aerospace applications. She was appointed the Yangtze River Distinguished Professorship in 2021.

Dr. Wang Zhu is Professor of the College of Materials Science and Engineering, Xiangtan University. His research focuses on mechanical characterization and failure mechanisms study of thermal barrier coatings.

This book highlights the failure theories and evaluation techniques of thermal barrier coatings, covering the thermal-mechanical–chemical coupling theories, performance and damage characterization techniques, and related evaluations. Thermal barrier coatings are the key thermal protection materials for high-temperature components in advanced aeroengines. Coating spallation is a major technical bottleneck faced by researchers. The extremely complex microstructure, diverse service environments, and failure behaviors bring challenges to the spallation analysis in terms of the selective use of mechanical theories, experimental methods, and testing platforms. In the book, the authors provide a systematic summary of the latest research and technological advances and present their insights and findings in the past couple of decades. This book is not only suitable for researchers and engineers in thermal barrier coatings and related fields but also a good reference for upper-undergraduate and postgraduate students of materials science and mechanics majors.



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