T. Fujita, T. Yasuzumi, Y. Tsuda, R. Suga, O. Hashimoto, T. Wano, Y. Fukuda
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引用次数: 1
Abstract
In this paper, alternate lamination of high-permittivity dielectric materials for super thin wave absorber is presented. The material had anisotropic relative permittivity values due to an array direction of the compounded graphite. Equivalent relative permittivities were calculated for various number of laminated layers. It was found that the equivalent relative permittivity was came close to arithmetic average values. Then the absorber was designed with the matching frequency of 2.0 GHz and a guaranteed absorption for the number of layers was studied. These results showed that more than 20 dB guaranteed absorption was achieved with six or more layers. Measured results of absorption characteristics agreed well with the simulated ones. The thickness of the fabricated absorber was very thin as 4.52 mm (d/λ=0.029).
本文介绍了一种用于超薄吸波器的高介电常数介质材料的交替叠片方法。由于复合石墨的排列方向不同,材料的相对介电常数具有各向异性。计算了不同层数的等效相对介电常数。结果表明,等效相对介电常数接近算术平均值。然后设计了匹配频率为2.0 GHz的吸波器,并研究了层数对吸波的保证。这些结果表明,六层或更多层的吸收保证达到20 dB以上。吸收特性的实测结果与模拟结果吻合较好。制备的吸收体厚度非常薄,为4.52 mm (d/λ=0.029)。