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Complex permittivity and microwave absorbing properties of SiC fiber woven fabrics

机译:SiC纤维机织物的复介电常数和吸波性能

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A comparative investigation of electric conductivity, complex permittivity, and microwave absorbing properties of KD-1 and Nicalon-202 fibers in the form of fabrics within the range of 8.2-12.4 GHz (X band) has been carried out. The electric conductivity value of KD-1 filaments is two orders larger than Nicalon-202. Both the values of real part (e′) and imaginary part (e″) of KD-1 fabrics are larger than their counterparts of Nicalon-202 especially the imaginary part, which is in agreement with larger DC conductivity (σ_d). The surface morphology and chemical component were characterized by SEM, EDS, Raman spectroscopy and XRD, which shows that both the KD-1 and Nicalon-202 SiC fibers are rich in carbon, while there is rich carbon layer on the surface of the former and the degree of order in the free carbon phase is higher compared with the latter. In addition, the amount of amorphous Si-C-O phase of KD-1 fibers is higher while the SiC crystal is smaller than Nicalon-202. The free carbon on the surface of KD-1 fibers can establish electric conductivity network. The larger e′ and e″ of KD-1 fabrics are believed to be mainly caused by conductive network established by rich carbon outer layer and relaxation polarization enhanced by more Si-C-O phase. The reflection loss of KD-1 and Nicalon-202 fabrics is -3.5 to 0.7 and -5.1 to -4.3 dB, calculated according to tested complex permittivity.
机译:已对织物形式的KD-1和Nicalon-202纤维在8.2-12.4 GHz(X波段)范围内的电导率,复介电常数和微波吸收性能进行了比较研究。 KD-1细丝的电导率值比Nicalon-202大两个数量级。 KD-1织物的实部(e')和虚部(e'')的值均大于Nicalon-202的对应值,尤其是虚部,这与较大的直流电导率(σ_d)相符。用SEM,EDS,拉曼光谱和XRD对表面形貌和化学成分进行了表征,结果表明KD-1和Nicalon-202 SiC纤维均富含碳,而前者的表面具有丰富的碳层。与后者相比,自由碳相中的有序度更高。另外,KD-1纤维的非晶Si-C-O相的量较高,而SiC晶体小于Nicalon-202。 KD-1纤维表面的游离碳可以建立导电网络。认为KD-1织物较大的e'和e''主要是由富碳外层建立的导电网络和更多Si-C-O相增强的弛豫极化引起的。根据测试的复介电常数计算,KD-1和Nicalon-202织物的反射损耗为-3.5至0.7 dB和-5.1至-4.3 dB。

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