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High temperature electromagnetic wave absorption properties of SiCf/Si3N4 composite induced by different SiC fibers

机译:不同SiC纤维诱导SiCF / Si3N4复合材料的高温电磁波吸收性能

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摘要

Ceramic matrix composites are potential electromagnetic (EM) wave absorbing materials for high temperature applications, and the critical problem is to obtain temperature insensitive absorption characteristics in broad-band. In this study, the double layer SiC fiber reinforced composite with ZMI-SiCf/Si3N4 as lossy layer and SLF-SiCf/Si3N4 as impedance matching layer, has been constructed via the chemical vapor infiltration method. The designed SiCf/Si3N4 composite with the thickness of 4.2 mm, which processes uniformly continuous microstructure and hierarchical permittivity, shows greatly enhanced EM wave absorbing performance of measured reflection loss less than -8 dB in whole X and Ku band at the room temperature. The thickness dependent absorbing properties of the SiCf/Si3N4 composite are investigated, which are found to be highly correlated to the combining mode of the lossy and matching layers. Particularly, the temperature dependent absorption characteristics indicate that the fabricated SiCf/Si3N4 composite keeps relatively reliable high temperature absorbing performances up to 600 degrees C. The temperature insensitive absorption characteristics should be mostly attributed to the enhanced compensating effect of the decreased interfacial polarization loss with increasing temperature induced by multiple interfaces, as well as the unchanged geometric structure of the designed composite.
机译:陶瓷基质复合材料是高温应用的潜在电磁(EM)波吸收材料,并且关键问题是在宽带中获得温度不敏感的吸收特性。在该研究中,通过化学蒸汽渗透方法构建了具有ZMI-SICF / Si3N4作为损失层和SLF-SICF / Si3N4的双层SiC纤维增强复合材料。设计的SICF / Si3N4复合材料,厚度为4.2mm,该复合材料均匀地处理均匀连续的微观结构和分层介电常数,显示出在室温下整个X和Ku带中的测量反射损耗小于-8 dB的热波吸收性能。研究了SICF / Si3N4复合材料的厚度依赖性吸收性能,其被发现与有损和匹配层的组合模式高度相关。特别地,温度依赖性吸收特性表明,制造的SICF / Si3N4复合材料保持相对可靠的高温吸收性能,高达600℃。温度不敏感吸收特性应主要归因于增强的界面极化损失随着增加的界面极化损失的补偿效果多个界面引起的温度,以及设计复合材料的不变的几何结构。

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