Advanced research on the preparation and application of carbide ceramic fibers

Carbide ceramic fibers are of significant importance for application in the high-tech areas of advanced aircraft engines, aerospace vehicles, and the nuclear industry due to their excellent properties, such as high tensile strength and elastic modulus, excellent high-temperature resistance, and oxid...

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Main Authors: Zhongqian Zhao, Wei Liao, Jing Chen, Jian Jiao, Cuilan Wu, Yanzi Gou
Format: Article
Language:English
Published: Tsinghua University Press 2024-09-01
Series:Journal of Advanced Ceramics
Subjects:
Online Access:https://www.sciopen.com/article/10.26599/JAC.2024.9220936
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author Zhongqian Zhao
Wei Liao
Jing Chen
Jian Jiao
Cuilan Wu
Yanzi Gou
author_facet Zhongqian Zhao
Wei Liao
Jing Chen
Jian Jiao
Cuilan Wu
Yanzi Gou
author_sort Zhongqian Zhao
collection DOAJ
description Carbide ceramic fibers are of significant importance for application in the high-tech areas of advanced aircraft engines, aerospace vehicles, and the nuclear industry due to their excellent properties, such as high tensile strength and elastic modulus, excellent high-temperature resistance, and oxidation resistance. This paper reviews the preparation and application of different carbide ceramic fibers, including SiC fibers and transition metal carbide (e.g., ZrC, HfC, and TaC) ceramic fibers. The preparation methods of carbide ceramic fibers are discussed in terms of different fiber diameters, represented by SiC fibers with variable weaving properties and functions due to their differences in diameter. Subsequently, the application of carbide ceramic fibers as high-temperature-resistant structural materials, catalyst carriers, sensors, and supercapacitors are summarized, and strategies for the future development of carbide ceramic fibers are proposed. This review aims to help researchers enhance their understanding of the preparation and utilization of carbide ceramic micro/nanofibers, advancing the development of high-performance carbide ceramic fibers.
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institution Kabale University
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publishDate 2024-09-01
publisher Tsinghua University Press
record_format Article
series Journal of Advanced Ceramics
spelling doaj-art-28d50e90ca0a48f9896a6fba3e7b42e52024-11-11T03:49:13ZengTsinghua University PressJournal of Advanced Ceramics2226-41082227-85082024-09-011391291133610.26599/JAC.2024.9220936Advanced research on the preparation and application of carbide ceramic fibersZhongqian Zhao0Wei Liao1Jing Chen2Jian Jiao3Cuilan Wu4Yanzi Gou5Science and Technology on Advanced Ceramic Fibers and Composites Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, ChinaNational Key Laboratory of Advanced Composites, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaCentre for High-Resolution Electron Microscopy, College of Materials Science and Engineering, Hunan University, Changsha 410082, ChinaNational Key Laboratory of Advanced Composites, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaCentre for High-Resolution Electron Microscopy, College of Materials Science and Engineering, Hunan University, Changsha 410082, ChinaScience and Technology on Advanced Ceramic Fibers and Composites Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, ChinaCarbide ceramic fibers are of significant importance for application in the high-tech areas of advanced aircraft engines, aerospace vehicles, and the nuclear industry due to their excellent properties, such as high tensile strength and elastic modulus, excellent high-temperature resistance, and oxidation resistance. This paper reviews the preparation and application of different carbide ceramic fibers, including SiC fibers and transition metal carbide (e.g., ZrC, HfC, and TaC) ceramic fibers. The preparation methods of carbide ceramic fibers are discussed in terms of different fiber diameters, represented by SiC fibers with variable weaving properties and functions due to their differences in diameter. Subsequently, the application of carbide ceramic fibers as high-temperature-resistant structural materials, catalyst carriers, sensors, and supercapacitors are summarized, and strategies for the future development of carbide ceramic fibers are proposed. This review aims to help researchers enhance their understanding of the preparation and utilization of carbide ceramic micro/nanofibers, advancing the development of high-performance carbide ceramic fibers.https://www.sciopen.com/article/10.26599/JAC.2024.9220936carbide ceramic fiberssic fibersboron carbide (b4c) fibersultra-high temperature ceramicssic ceramic fiber-reinforced sic (sicf/sic) composites
spellingShingle Zhongqian Zhao
Wei Liao
Jing Chen
Jian Jiao
Cuilan Wu
Yanzi Gou
Advanced research on the preparation and application of carbide ceramic fibers
Journal of Advanced Ceramics
carbide ceramic fibers
sic fibers
boron carbide (b4c) fibers
ultra-high temperature ceramics
sic ceramic fiber-reinforced sic (sicf/sic) composites
title Advanced research on the preparation and application of carbide ceramic fibers
title_full Advanced research on the preparation and application of carbide ceramic fibers
title_fullStr Advanced research on the preparation and application of carbide ceramic fibers
title_full_unstemmed Advanced research on the preparation and application of carbide ceramic fibers
title_short Advanced research on the preparation and application of carbide ceramic fibers
title_sort advanced research on the preparation and application of carbide ceramic fibers
topic carbide ceramic fibers
sic fibers
boron carbide (b4c) fibers
ultra-high temperature ceramics
sic ceramic fiber-reinforced sic (sicf/sic) composites
url https://www.sciopen.com/article/10.26599/JAC.2024.9220936
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AT jingchen advancedresearchonthepreparationandapplicationofcarbideceramicfibers
AT jianjiao advancedresearchonthepreparationandapplicationofcarbideceramicfibers
AT cuilanwu advancedresearchonthepreparationandapplicationofcarbideceramicfibers
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