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Design of Frequency Selective Surface-Based Hybrid Nanocomposite Absorber for Stealth Applications

机译:隐身应用中基于频率选择表面的杂化纳米复合吸波材料的设计

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This paper presents the design, fabrication, and electromagnetic testing of a frequency selective surface (FSS)-based novel hybrid nanocomposite absorber for enhanced electromagnetic absorption. The proposed hybrid absorber consists of an FSS pattern printed over a dielectric substrate backed by aluminum foil, which is integrated together with a customized dielectric nanocomposite sheet. The dielectric sheet comprises the conducting carbon black (CB) nanopowders embedded into the epoxy matrix. The fabricated nanocomposite sheet is first characterized for the effective complex permittivity using the free-space measurement technique, and the measured electromagnetic properties are then used for the design of a hybrid absorber. The proposed hybrid absorber having overall thickness of 2.6 mm shows enhanced -10-dB absorption bandwidth of 3.5 GHz, which is much higher than that of the FSS and CB nanocomposite samples measured individually. The proposed work provides an effective way to combine the absorption properties of FSS with that of a customized dielectric absorber sheet in order to design an efficient hybrid absorber having reduced thickness with enhanced absorption bandwidth for stealth technology and various strategic applications.
机译:本文介绍了基于频率选择表面(FSS)的新型杂化纳米复合材料吸收剂的设计,制造和电磁测试,该复合材料用于增强电磁吸收。提出的混合吸收体由FSS图案组成,该图案印刷在铝箔支持的介电基板上,并与定制的介电纳米复合材料片集成在一起。介电片包含嵌入环氧基质中的导电炭黑(CB)纳米粉。首先使用自由空间测量技术对制成的纳米复合材料片材的有效复介电常数进行表征,然后将测得的电磁性能用于混合吸收体的设计。提出的总厚度为2.6 mm的混合吸收体显示了3.5 GHz的增强的-10 dB吸收带宽,这比单独测量的FSS和CB纳米复合材料样品的吸收带宽高得多。拟议的工作提供了一种有效的方法,可以将FSS的吸收特性与定制的介电吸收片的吸收特性相结合,从而为隐身技术和各种战略应用设计一种厚度减小,吸收带宽提高的高效混合吸收剂。

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