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A transparent and flexible metasurface with both low infrared emission and broadband microwave absorption

机译:具有低红外发射和宽带微波吸收的透明和灵活的元表面

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摘要

Researches on radar and infrared stealth compatibility have drawn much attention in recent years. In this work, a flexible metasurface with low infrared emission, broadband microwave absorption as well as high optical transmission is simultaneously achieved. The whole structure is composed of an infrared shielding layer (IRSL), a radar absorption layer (RAL), a substrate and a backplane, and the total thickness is only 3.5 mm. Based on the impedance matching theory, the microwave absorption higher than 90% can be achieved in the radar waveband ranging from 7.3 to 18.8 GHz, corresponding to a relative bandwidth of 88.1%. By using a conductive patch array as the IRSL, a low infrared emis-sivity of 0.49 can be realized in the infrared region from 8 to 14 μm. Moreover, by rational designing both the structures and materials, the metasurface in this work cannot only achieve bi-stealth functions with low infrared emission and broad microwave absorption, but also shows optically transparent and flexible properties, thus quite suitable for practical applications. Both the simulated and experimental results suggest that the proposed metasurface is promising in the multispectral stealth fields.
机译:近年来对雷达和红外隐身兼容性的研究造成了很多关注。在这项工作中,同时实现了具有低红外发射,宽带微波吸收和高光传输的柔性元表面。整个结构由红外屏蔽层(IRSL),雷达吸收层(RAL),基板和背板组成,并且总厚度仅为3.5mm。基于阻抗匹配理论,在7.3至18.8GHz的雷达波段中,可以实现高于90%的微波吸收,对应于88.1%的相对带宽。通过使用导电贴片阵列作为IRSL,可以在8至14μm的红外区域中实现低红外的EMIS-S度。此外,通过理性设计结构和材料,本作工作中的元表面不能只实现具有低红外发射和宽微波吸收的双隐形功能,而且还显示出光学透明和柔性的性质,因此非常适合实际应用。模拟和实验结果都表明,所提出的Metasurface在多光谱隐形田中具有很有希望。

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  • 来源
    《Journal of materials science 》 |2021年第2期| 2001-2010| 共10页
  • 作者单位

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

    National Key Laboratory on Electromagnetic Environment Effects and Electro-Optical Engineering Army Engineering University of PLA Nanjing 210007 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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