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Wideband square spiral metamaterial absorbers based on flaky carbonyl iron/epoxy composites

机译:基于片状羰基钢/环氧复合材料的宽带方形螺旋超材料吸收器

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摘要

A broadband and thin microwave absorber composed of metal-base planar metamaterials (MMs) sandwiched between two layers of flaked-shaped carbonyl iron (FCI) composites is presented. FCI powder was prepared by ball milling spherical carbonyl iron powder and then added to epoxy resin to prepare FCI composite (FCIC) samples with different weight fractions. With these electromagnetic characteristics, a broadband, polarization-insensitive and thin metamaterial absorber comprising of arrays of square spirals embedded between two different layers of FCIC is optimally designed through a genetic algorithm. The reflection loss of the measured square spiral MM absorber with a thickness of 3.4 mm can reach –26 dB at matching frequency 4.4 GHz and the absorbing bandwidth below –9.3 dB is covered from 3.6 to 18.0 GHz which almost 4 fourfold bandwidth compared to that of the FCIC without the incorporation of MM layers.
机译:提出了一种宽带和薄的微波吸收器,其由夹在两层植绒形羰基铁(FCI)复合材料之间夹在两层之间的金属基平面超材料(MMS)组成。通过球铣子球形羰基铁粉制备FCI粉末,然后加入环氧树脂以制备具有不同重量级分的Fci复合物(Fcic)样品。利用这些电磁特性,通过遗传算法最佳地设计了包括嵌入在两个不同的FCIC之间的方形螺旋阵列的宽带,极化不敏感和薄的超材料吸收器。厚度为3.4mm的测量方形螺旋MM吸收器的反射损耗可以在匹配频率4.4 GHz时达到-26dB,低于-9.3 dB的吸收带宽从3.6到18.0 GHz覆盖,相比,这几乎是4个四倍带宽的GHz FCIC而不包含MM层。

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