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Toughening Mechanism of Mullite Matrix Composites: A Review

机译:莫来石矩阵复合材料的增韧机理:综述

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Mullite has high creep resistance, low thermal expansion coefficient and thermal conductivity, excellent corrosion resistance and thermal shock resistance, and plays an important role in traditional ceramics and advanced ceramic materials. However, the poor mechanical properties of mullite at room temperature limit its application. In order to improve the strength and toughness of mullite, the current research focuses on the modification of mullite by using the second phase. The research status of discontinuous phase (particle, whisker, and chopped fiber) and continuous fiber reinforced mullite matrix composites is introduced, including preparation process, microstructure, and its main properties. The reinforcement mechanism of second phase on mullite matrix composites is summarized, and the existing problems and the future development direction of mullite matrix composites are pointed out and discussed.
机译:莫来石具有高蠕变电阻,低热膨胀系数和导热系数,优异的耐腐蚀性和热抗冲击性,并在传统陶瓷和先进的陶瓷材料中起着重要作用。然而,室温下莫来石的机械性能差限制其应用。为了提高莫来石的强度和韧性,目前的研究侧重于使用第二阶段改变莫来石。引入了不连续相(颗粒,晶须和切碎纤维)和连续纤维增强莫来石基复合材料的研究现状,包括制备方法,微观结构及其主要性质。概述了莫来石基复合材料上的第二相的增强机制,指出并讨论了莫来石矩阵复合材料的现有问题和未来的发展方向。

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