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(07E703) Enhancing and broadening absorption properties of frequency selective surfaces absorbers using FeCoB-based thin film

机译:(07E703)使用Fecob基薄膜增强和展大频率选择性表面吸收剂的吸收性能

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In this paper, the influence of FeCoB-based magnetic film on the absorption properties of traditional frequency selective surface (FSS) was investigated experimentally. A single-layer Minkowski fractal planar frequency selective surface was chosen, and the laser etching technique was proposed to fabricate aluminum-based FSS (AFSS) samples. Magnetic films were prepared by radio frequency magnetron sputtering, with the targets of Fe_(40)Co_(40)B_(20) and SiO_2. It is found that after the magnetic film is incorporated, the bandwidth under —10 dB increases by 33.3% from 5.08 to 6.78 GHz and the peak value of reflectivity decreases from —12.46 to —38.41 dB. The 3.1-mm-thick radar absorber is relatively light and could obtain the reflectivity of —38.41 with —20 dB bandwidth of 1.85 GHz. As a consequence, under the circumstance that the total thickness of the sample maintains relatively constant, the magnetic thin film can effectively improve the absorption properties of the sample.
机译:本文研究了基于Fecob基磁膜对传统频率选择性表面(FSS)的吸收性能的影响。选择单层Minkowski分形平面频率选择表面,并提出了激光蚀刻技术来制造基于铝的FSS(AFSS)样品。通过射频磁控溅射制备磁性膜,具有Fe_(40)CO_(40)B_(20)和SiO_2的靶标。发现在磁性膜结合后,在-10 dB下的带宽从5.08至6.78GHz增加33.3%,反射率的峰值从-12.46到-38.41dB降低。 3.1毫米厚的雷达吸收器相对较轻,可以获得-38.41的反射率,具有-20 dB带宽为1.85GHz。因此,在样品的总厚度保持相对恒定的情况下,磁性薄膜可以有效地改善样品的吸收性能。

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