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首页> 外文期刊>Journal of Advanced Ceramics >Recent advances in joining of SiC-based materials (monolithic SiC and SiCf/SiC composites): Joining processes, joint strength, and interfacial behavior
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Recent advances in joining of SiC-based materials (monolithic SiC and SiCf/SiC composites): Joining processes, joint strength, and interfacial behavior

机译:SiC基材料(整体SiC和SiC f / SiC复合材料)的连接研究的最新进展:连接过程,连接强度和界面行为

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Silicon carbide (SiC) has been widely concerned for its excellent overall mechanical and physical properties, such as low density, good thermal-shock behavior, high temperature oxidation resistance, and radiation resistance; as a result, the SiC-based materials have been or are being widely used in most advanced fields involving aerospace, aviation, military, and nuclear power. Joining of SiC-based materials (monolithic SiC and SiCf/SiC composites) can resolve the problems on poor processing performance and difficulty of fabrication of large-sized and complex-shaped components to a certain extent, which are originated from their high inherent brittleness and low impact toughness. Starting from the introduction to SiC-based materials, joining of ceramics, and joint strength characterization, the joining of SiC-based materials is reviewed by classifying the as-received interlayer materials, involving no interlayer, metallic, glass-ceramic, and organic interlayers. In particular, joining processes (involving joining techniques and parameter conditions), joint strength, interfacial microstructures, and/or reaction products are highlighted for understanding interfacial behavior and for supporting development of application-oriented joining techniques.
机译:碳化硅(SiC)具有出色的整体机械和物理性能,例如低密度,良好的热震性能,高温抗氧化性和抗辐射性,因此受到广泛关注。结果,SiC基材料已经或正在广泛应用于涉及航空航天,航空,军事和核电的最先进领域。 SiC基材料(整体SiC和SiCf / SiC复合材料)的结合可以在一定程度上解决加工性能差和难以制造大型和复杂形状部件的问题,这些问题是由于它们固有的高脆性和冲击韧性低。从介绍基于SiC的材料,陶瓷的接合和接头强度表征开始,通过对按原样接收的中间层材料进行分类(不涉及中间层,金属,玻璃陶瓷和有机中间层)对SiC基材料的接合进行了回顾。 。特别是,强调了连接过程(涉及连接技术和参数条件),连接强度,界面微结构和/或反应产物,以了解界面行为并支持面向应用的连接技术的发展。

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