Millimeter-Wave Absorption Properties of Thin Wave Absorber in Free Space with New Porous Carbon Material

T. Kamei, H. Shima, Takashi Yamamoto, S. Ogino, S. Ishii
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引用次数: 3

Abstract

In this paper, we focus on PHYTOPOROUS, a porous carbon material made entirely from plant-based ingredients, as a new broadband-wave absorber material that acts in the millimeter wave band. We created prototypes of thin rubber-sheet wave absorbers that contain porous carbon (PHYTOPOROUS) made from rice chaff and soybean hulls, which are both agricultural residue products that are generated in large quantities. We investigated the permittivity and reflectance characteristics of this material using the free-space time-domain method. The thin rubber-sheet wave absorber that contained PHYTOPOROUS made from soybean hulls exhibited a frequency band that was approximately 18 GHz wide and centered at 90 GHz. The return loss for this material was greater than −20 dB. This demonstrates that the material provides nearly constant reflection absorption over a wide frequency band.
新型多孔碳材料薄波吸收体在自由空间中的毫米波吸收特性
PHYTOPOROUS是一种完全由植物成分制成的多孔碳材料,是一种新型的毫米波波段的宽带波吸收材料。我们创造了薄橡胶片波吸收器的原型,其中包含由稻壳和大豆壳制成的多孔碳(PHYTOPOROUS),这两种产品都是大量产生的农业残留物。我们用自由空间-时域方法研究了这种材料的介电常数和反射率特性。含有由大豆壳制成的PHYTOPOROUS薄橡胶片波吸收器显示出大约18 GHz宽,90 GHz中心的频带。该材料的回波损耗大于−20 dB。这表明该材料在较宽的频带内提供了几乎恒定的反射吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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