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Matrix Cracking in Ceramic-Matrix Composites
Matrix Cracking in Ceramic-Matrix Composites
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- More about Matrix Cracking in Ceramic-Matrix Composites
This book focuses on the analysis of the matrix cracking behavior in ceramic–matrix composites (CMCs), including the development of micromechanical damage models to predict experimental results. It can help material scientists and engineering designers better understand the cracking behavior in CMCs.
Format: Paperback / softback
Length: 160 pages
Publication date: 14 March 2023
Publisher: Springer Verlag, Singapore
This comprehensive book delves into the intricate realm of matrix cracking behavior in ceramic-matrix composites (CMCs), encompassing a wide range of topics. It begins by exploring the initial stages of matrix cracking, including the formation and growth of cracks. It then delves into the evolution of matrix cracking, considering factors such as temperature and oxidation. The book goes further to examine the behavior of matrix cracks, including their opening and closure dynamics, influenced by these environmental factors.
To gain a deeper understanding of the cracking process, the book meticulously analyzes the underlying micro-damage mechanisms. This analysis leads to the development of micromechanical damage models, which serve as powerful tools for characterizing the cracking behavior of CMCs. By employing these models, researchers and engineering designers can gain valuable insights into the complex mechanisms governing the cracking behavior of these materials.
Furthermore, the book predicts the experimental matrix cracking behavior of various CMCs at both room and elevated temperatures. This prediction is based on rigorous theoretical analysis and experimental data, providing a valuable reference for material scientists and engineering designers working in this field.
In conclusion, this book is a valuable resource for anyone seeking to gain a deeper understanding of the cracking behavior in CMCs. It provides a comprehensive treatment of the subject, covering key aspects such as initial matrix cracking, evolution, crack opening and closure, and micro-damage mechanisms. By leveraging the insights and methodologies presented in this book, material scientists and engineering designers can enhance their ability to design and optimize CMCs for a wide range of applications.
Weight: 279g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811902345
Edition number: 1st ed. 2022
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