
Damage, Fracture, and Fatigue of Ceramic-Matrix Composites
Longbiao Li(Author)
Springer (Publisher)
Published on 5. September 2018
Book
Hardback
VIII, 244 pages
978-981-13-1782-8 (ISBN)
Description
This book focuses on the damage, fracture and fatigue of ceramic-matrix composites. It investigates tensile damage and fracture, fatigue hysteresis, and the properties of interfaces subjected to cyclic fatigue loading. Further, it predicts fatigue life at room and elevated temperatures using newly developed damage models and methods, and it analyzes and compares damage, fracture and fatigue behavior of different fiber performs: unidirectional, cross-ply, 2D and 2.5D woven. The developed models and methods can be used to predict the damage and lifetime of ceramic-matrix composites during applications on hot section components.Ceramic-matrix composites (CMCs) are high-temperature structural materials with the significant advantages of high specific strength, high specific modulus, high temperature resistance and good thermal stability, which play a crucial role in the development of high thrust weight ratio aero engines. The critical nature of the application of these advanced materials makes comprehensive characterization a necessity, and as such this book provides designers with essential information pertaining not only to the strength of the materials, but also to their fatigue and damage characteristics.
More details
Edition
2018 ed.
Language
English
Place of publication
Singapore
Singapore
Target group
Professional and scholarly
Illustrations
146 farbige Abbildungen, 26 s/w Abbildungen
VIII, 244 p. 172 illus., 146 illus. in color. With Approx. 300 p. 180 illus. in color..
Dimensions
Height: 241 mm
Width: 160 mm
Thickness: 20 mm
Weight
547 gr
ISBN-13
978-981-13-1782-8 (9789811317828)
DOI
10.1007/978-981-13-1783-5
Schweitzer Classification
Other editions
Additional editions

Book
12/2018
Springer
€117.69
Shipment within 15-20 days

E-Book
08/2018
1st Edition
Springer
€106.99
Available for download
Person
Li Longbiao has been a lecturer at Nanjing University of Aeronautics and Astronautics since 2012. He graduated from Nanjing University of Aeronautics and Astronautics and received his PhD degree in 2011. His research focuses on fatigue, damage and fracture in high-temperature, ceramic-matrix composites, and in the past five years he has been the first author of 99 SCI papers in journals such as Ceramics International, the Journal of the European Ceramic Society, Composites Part B, the International Journal of Mechanical Sciences, Theoretical and Applied Fracture Mechanics, the International Journal of Fatigue, Materials Science and Engineering A, Engineering Fracture Mechanics, and the International Journal of Fracture. He has been involved in different projects related to structural damage, reliability and airworthiness design for aircraft and aero engines, supported by the Natural Science Foundation of China, COMAC Company and AECC Commercial Aircraft Engine Company.
Content
Tensile Behavior of Ceramic-Matrix Composites.- Fatigue Hysteresis Behavior of Ceramic-Matrix Composites.- Interface Damage of Ceramic-Matrix Composites.- Fatigue Life Prediction of Ceramic-Matrix Composites.