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Microwave properties of the single-layer periodic structure composites composed of ethylene-vinyl acetate and polycrystalline iron fibers

机译:乙烯-醋酸乙烯酯和多晶铁纤维组成的单层周期性结构复合材料的微波特性

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摘要

A single-layer microwave absorbing structure composed of the ethylene-vinyl acetate (EVA) powders and polycrystalline iron fibers (PIFs) with thickness of 2 mm, which has a periodic array of circular hole, is designed and fabricated using the mechanical method. We show that the reflection loss (RL) can be easily adjusted by changing the geometric parameters. The maximum RL is 18.7 dB at 15 GHz, and the effective absorption bandwidth of 1.7 GHz for the diameter of circular hole is 10 mm, and enhanced to be 23.7 dB at 15.1 GHz with the corresponding bandwidth of 7.2 GHz when the diameter decreases to 5 mm. The measured absorption of the composite is in good accordance with the simulation results. Furthermore, the possible absorption mechanism of the composite has been discussed. Our results illustrate that the integration of frequency selective surface (FSS) with traditional PIFs can achieve a wide frequency range of a strong absorption.
机译:使用机械方法设计和制造了由乙烯-醋酸乙烯酯(EVA)粉末和厚度为2 mm的具有周期性圆孔阵列的多晶铁纤维(PIF)组成的单层微波吸收结构。我们表明,可以通过更改几何参数轻松调整反射损耗(RL)。在15 GHz处最大RL为18.7 dB,圆孔直径的有效吸收带宽为1.7 GHz为10mm,当直径减小到5时,在15.1 GHz处的有效吸收带宽增加到23.7 dB,相应的带宽为7.2 GHz。毫米测得的复合材料吸收率与模拟结果非常吻合。此外,已经讨论了复合材料的可能吸收机理。我们的结果表明,频率选择表面(FSS)与传统PIF的集成可以实现宽范围的强吸收。

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