复合材料学报2024,Vol.41Issue(1) :188-195.DOI:10.13801/j.cnki.fhclxb.20230512.002

宽频蜂窝夹层结构吸波复合材料的低频隐身介质超材料研究

Study on the low frequency radar-stealth dielectric metamaterial of broadband wave-absorbing honeycomb sandwich composites

鹿海军 礼嵩明 黄浩 吴思保 王甲富
复合材料学报2024,Vol.41Issue(1) :188-195.DOI:10.13801/j.cnki.fhclxb.20230512.002

宽频蜂窝夹层结构吸波复合材料的低频隐身介质超材料研究

Study on the low frequency radar-stealth dielectric metamaterial of broadband wave-absorbing honeycomb sandwich composites

鹿海军 1礼嵩明 1黄浩 2吴思保 2王甲富3
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作者信息

  • 1. 中国航空制造技术研究院复合材料技术中心,北京 101300;先进复合材料重点实验室,北京 100095
  • 2. 中国航空制造技术研究院复合材料技术中心,北京 101300
  • 3. 空军工程大学 基础部,西安 710051
  • 折叠

摘要

研究用于宽频蜂窝夹层结构吸波复合材料的介质超材料的低频隐身性能,分析碳纤维介质超材料单元的电磁响应特性及其对蜂窝夹层结构吸波复合材料电性能和力学性能的影响.结果表明:制备的碳纤维介质超材料单元可以实现与金属超材料单元相当的电磁响应效果;当吸波蜂窝高度为 50 mm、透波面板厚度为1 mm时,碳纤维介质超材料单元的引入,可以使吸波蜂窝夹层结构复合材料低频吸波性能得到显著提升,L波段反射率最弱值提升 2 dB以上,平均反射率提升 4 dB以上;含碳纤维介质超材料单元透波面板基本力学性能与透波面板复合材料自身力学性能基本相当,引入碳纤维介质超材料单元不会降低透波面板力学性能.

Abstract

The low frequency radar-stealth performance of the dielectric metamaterial for broadband wave-absorb-ing honeycomb sandwich composites was studied.The electromagnetic response characteristics of the carbon fiber dielectric metamaterial units and their effects on the electrical and mechanical properties of wave-absorbing honey-comb sandwich composites were analyzed.The results show that the electromagnetic response of the carbon fiber metamaterial units can be comparable to that of the metal metamaterial units.When the height of the wave-absorb-ing honeycomb is 50 mm and the thickness of the wave-transmitting skin is 1 mm,the introduction of the carbon fiber metamaterial units can significantly improve the low-frequency wave-absorbing performance of the honey-comb sandwich composites.The weakest reflectivity and the averaged reflectivity in the L-band are increased by more than 2 dB and 4 dB,respectively.The mechanical properties of the wave-transmitting skin with carbon fiber dielectric metamaterial are close to that without metamaterial units.The introduction of carbon fiber dielectric metamaterial units shows no negative effects on the mechanical properties of the wave-transmitting skin.

关键词

介质超材料/低频/隐身/吸波性能/吸波蜂窝/夹层结构/碳纤维

Key words

dielectric metamaterial/low frequency/radar-stealth/wave-absorbing property/wave-absorbing honeycomb/sandwich structure/carbon fiber

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出版年

2024
复合材料学报
北京航空航天大学 中国复合材料学会

复合材料学报

CSTPCDCSCD北大核心
影响因子:0.933
ISSN:1000-3851
被引量1
参考文献量24
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