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首页> 外文期刊>Journal of Materials Science >Electromagnetic wave absorption potential of SiC-based ceramic woven fabrics in the GHz range
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Electromagnetic wave absorption potential of SiC-based ceramic woven fabrics in the GHz range

机译:GHz范围内SiC基陶瓷机织物的电磁波吸收电势

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This article investigates the electromagnetic wave-absorbing properties of SiC-based ceramic woven fabrics. The electrical conductivity of ceramic woven fabrics was modified by heat treatment in air, resulting in oxidation, and the electromagnetic wave absorption potential of single- and double-layer ceramic woven fabrics were determined in the 17–40 GHz frequency range using the free-space method. The absorption potentials of ceramic woven fabrics of different chemical composition and weave were correlated with their material properties through X-ray diffraction, scanning electron microscopy, and electrical resistance measurement. The effect of the different arrangements of fabrics in multilayer forms, and how oxidation affects the electromagnetic wave absorption potential of the fabrics are discussed. Various double-layer combinations of SiC-based woven fabrics revealed promising potentials for both reduced reflection and transmission, resulting in ~90% absorption in the GHz range, which makes them powerful candidate materials for electromagnetic wave absorption applications.
机译:本文研究了SiC基陶瓷机织物的电磁波吸收特性。陶瓷机织物的电导率通​​过空气中的热处理进行改性,导致氧化,并使用自由空间在17–40 GHz频率范围内确定单层和双层陶瓷机织物的电磁波吸收电势方法。通过X射线衍射,扫描电子显微镜和电阻测量,将不同化学组成和组织的陶瓷机织织物的吸收势与其材料性能相关联。讨论了多层形式的织物的不同排列方式的影响,以及氧化如何影响织物的电磁波吸收电势。 SiC基机织织物的各种双层组合显示出减少反射和透射的潜力,在GHz范围内吸收率约为90%,这使其成为电磁波吸收应用的有力候选材料。

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