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Temperature-dependent dielectric and microwave absorption properties of silicon carbide fiber-reinforced oxide matrices composite

机译:碳化硅纤维增强氧化物基质复合材料的温度依赖性介电和微波吸收性能

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摘要

Simultaneous improvement of mechanical and microwave absorption properties of the composites at high temperatures still undergoes considerable challenges. We have investigated the high-temperature microwave absorbing properties of the silicon carbide fiber-reinforced oxide matrices (SiCf/mullite-SiO2) composite on the basis of our previous work. Results indicate that the complex permittivity increases from 8.19 - j5.09 to 16.39 - j9.83 at 10 GHz with the temperature rising from 200 to 600 degrees C. The SiCf /mullite-SiO2 composite has relatively high tan delta values indicating superior microwave attenuation ability. The reflection loss (RL) values of the composite increase with rising thickness. It can be noticed that the RL response curves of different thicknesses are basically consistent at 200 and 400 degrees C. In addition, the RL value of the composite is less than - 5 dB in the whole X band when the thickness is under 2.9 mm and the temperature is below 400 degrees C. The hybrid oxide matrices of mullite and SiO2 are beneficial to improve the dielectric properties, especially high-temperature microwave absorption properties of the SiC fiber-reinforced ceramic matrix composite. The superior microwave absorption properties indicate that the SiCf/mullite-SiO2 composite is a promising candidate in aircraft engine nozzle and aerodynamic heating parts of aircrafts at high temperatures.
机译:在高温下同时改善复合材料的机械和微波吸收性能仍然经历了相当大的挑战。我们研究了碳化硅纤维增强氧化物矩阵(SICF / MULLITE-SIO2)复合材料的高温微波吸收性能,基于我们之前的工作。结果表明,复杂介电常数从8.19 - J5.09至16.39 - J9.83增加到10GHz,温度从200至600摄氏度上升。SICF / Mullite-SiO2复合材料具有相对高的Tan Delta值,表明优越的微波衰减能力。复合材料的反射损耗(RL)增加厚度上升。可以注意到,不同厚度的RL响应曲线在200和400℃下基本一致。另外,当厚度低于2.9mm时,复合材料的RL值小于-5 dB。温度低于400℃。莫来石和SiO 2的杂化氧化物基质有利于改善SiC纤维增强陶瓷基质复合材料的介电性能,尤其是高温微波吸收性能。优异的微波吸收特性表明,SICF / MULLITE-SIO2复合材料是在高温下飞机发动机喷嘴和飞机的空气动力学加热部分的有希望的候选者。

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  • 来源
    《Journal of Materials Science》 |2018年第22期|共9页
  • 作者单位

    Northwestern Polytech Univ State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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