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Advances in Ceramic Matrix Composites

Paperback Engels 2025 9780443185984
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Advanced ceramics and composite materials are increasingly being utilized as components in batteries, fuel cells, sensors, high-temperature electronics, membranes, and high-end biomedical devices, in addition to their traditional use in seals, valves, implants, and high-temperature and wear components. In recent years, there has been substantial progress in the use of ceramic-matrix composites (CMCs), with new applications developing continually.

Advances in Ceramic-Matrix Composites, Third Edition, delivers an innovative approach focusing on the very latest advances, materials developments, and new applications.

These include new technologies that have emerged, such as additive manufacturing of ceramic-matrix composites (CMCs), the design of CMCs based on MAX-phase and ultrahigh-temperature ceramics (UHTCs), and the reinforcement of CMCs with graphene nanoplatelets. Similarly, new applications for CMCs have emerged for enhanced electromagnetic absorption and ionizing radiation shielding.

The specialized information contained in this book will be highly valuable for researchers and postgraduate students working in ceramic science, engineering, and ceramic composites technology and engineers and scientists in aerospace, energy, building and construction, biomedical, and automotive industries.

Specificaties

ISBN13:9780443185984
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

<p>1. Advances in ceramic matrix composites: an introduction<br>It (Jim) Meng Low<br>Part 1: Parts and Processing<br>2. Processing, properties and applications of ceramic matrix composites, SiCf/SiC: an overview<br>D. Ding<br>3. Nanoceramic matrix composites: types, processing and applications<br>Saikat Maitra<br>4. Silicon carbide-containing alumina nanocomposites: processing and properties<br>Dusan Galusek<br>5. Advances in the manufacture of ceramic matrix composites using infiltration techniques<br>Dmitri Kopeliovich<br>6. Heat treatment for strengthening silicon carbide ceramic matrix composites<br>Dusan Bucevac<br>7. Developments in hot pressing (HP) and hot isostatic pressing (HIP) of ceramic matrix composites<br>C. F. Hu<br>8. Hot pressing of tungsten carbide ceramic matrix composites<br>H.X. Qu<br>9. Strengthening alumina ceramic matrix nanocomposites using spark plasma sintering<br>J.L. Huang<br>10. Cold ceramics: Low-temperature processing of ceramics for applications in composites<br>Agnes Smith<br>11. High performance natural fiber-reinforced cement composites<br>It (Jim) Meng Low, A. Hakami and Faiz Shaikh<br>12. Recent progress in development for high-performance tungsten carbide-based composites: synthesis, characterization, and potential applications<br>Jianfeng Zhang Sr.<br>Part 2 - Properties<br>13. Understanding interfaces and mechanical properties of ceramic matrix composites<br>L. Li<br>14. Understanding the wear and tribological properties of ceramic matrix composites<br>C. Zhang<br>15. Advances in geopolymer composites with natural reinforcement<br>Thamer Alomayri<br>16. Advances in self-healing ceramic matrix composites<br>F. Rebillat<br>17. Self-crack-healing behavior in ceramic matrix composites<br>Toshio Osada<br>Part 3 - Applications<br>18. Geopolymer (aluminosilicate) composites: Synthesis, properties and applications<br>Kenneth J.D MacKenzie<br>19. Fibre-reinforced geopolymer composites (FRGCs) for structural applications<br>Faiz Shaikh<br>20. Ceramic matrix composites in fission and fusion energy applications<br>Yutai Katoh<br>21. The use of ceramic matrix composites for metal cutting applications<br>Jun Zhao<br>22. Cubic boron nitride-containing ceramic matrix composites for cutting tools<br>Jianfeng Zhang Sr.<br>23. Fabricating functionally graded ceramic micro-components using soft lithography<br>H. Hassanin<br>24. Ceramics in restorative dentistry<br>L. Yin<br>25. Resin-based ceramic matrix composite materials in dentistry<br>H. Mirmohammadi<br>26. Ceramics in solid oxide fuel cells (SOFC) for energy generation<br>X. Xu<br>27. MAX phase/ultra-high temperature ceramic composites<br>Laura Silvestroni and Jesus Gonzalez-Julian<br>28. An Overview of tungsten carbide coating by electro-discharge coating using ceramic composite tool<br>Anshuman Kumar Sahu<br>29. MAX phase ceramic matrix composites: processing, properties, and applications<br>Shibo Li<br>30. Recent developments, strategies and challenges of integrated computational methodologies in advanced ceramic materials<br>Haolin Li and Qi Dong<br>31. Ultra-high temperature ceramics composites: synthesis, microstructure, and properties<br>Xuanru Ren<br>32. Fabrication and Applications of SiCf/SiC Composites<br>Honglei Wang and Xingui Zhou<br>33. Dynamic Thermal Stability of Ternary Carbides and Nitrides<br>It (Jim) Meng Low<br>34. Microstructure-Property Relationships in Mullite Whisker Reinforced Alumina Composites<br>It (Jim) Meng Low<br>35. Structural Characterization of Graphene and Graphite Nanostructures<br>It (Jim) Meng Low<br>36. Infiltration Processing of Layer-Graded Alumina-Matrix Composites<br>It (Jim) Meng Low<br>37. Thermal Stability of Aluminium Titanate and Its Composites<br>It (Jim) Meng Low<br>​​​​​​​</p>

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