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受孔雀羽小枝启发的超宽带电磁波吸收ZrB基陶瓷复合材料

An Ultra-Broadband Electromagnetic Wave Absorbing ZrB-Based Ceramic Composite Inspired by Barbule of Peacock.

作者信息

Dai Mengyu, Jia Yujun, Deng Yumeng, Ren Bin, Liu Sijian, Wang Qian, Lin Yixiang, Cheng Junjie, Li Hejun

机构信息

State Key Laboratory of Solidification Processing, Shaanxi Key Laboratory of Fiber Reinforced Light Composite Materials, Northwestern Polytechnical University, Xi'an, 710072, China.

Henan Key Laboratory of High Performance Carbon Fiber Reinforced Composites, Institute of Carbon Matrix Composites, Henan Academy of Sciences, Zhengzhou, 450046, China.

出版信息

Small. 2024 Dec;20(51):e2405364. doi: 10.1002/smll.202405364. Epub 2024 Oct 12.

Abstract

Broadband electromagnetic wave (EMW) absorbing ceramic materials are highly required for the thermal parts of aerocraft. As members of ultrahigh temperature ceramics, ZrB-based ceramics have great potential for applications in more extreme environments relative to the currently used silicon-based and oxide-based ceramics. However, ZrB is not among the traditional EMW absorbing material candidates due to its high conductivity, which induces the strong reflection of EMW due to the impedance mismatch with free space. Herein, ZrB-based ceramic with a bionic microstructure inspired by peacock barbules is proposed. Boron nitride nanotubes acting as polarization centers inside the ZrB-based material cause massive EMW dissipation. The ceramic shows an ultra-broadband absorption of 9.6 GHz (<-10 dB from 8.4 to 18 GHz), almost covering the entire X and Ku bands, superior to the reported ceramics. The polarization centers successfully turn the ZrB-based ceramic from EMW reflecting material to an excellent EMW absorbing material by the bionic barbule interspersed microstructure. The simulated metamaterial of the ceramic achieves an ultra-broad absorption (lower than -15 dB) in the range of 2-40 GHz. This work provides valuable insights for the development of broadband absorption material for high-temperature environments.

摘要

飞行器的热部件对宽带电磁波(EMW)吸收陶瓷材料有很高的需求。作为超高温陶瓷的一员,相对于目前使用的硅基和氧化物基陶瓷,ZrB基陶瓷在更极端的环境中具有巨大的应用潜力。然而,ZrB由于其高导电性,不在传统的EMW吸收材料候选之列,这会由于与自由空间的阻抗失配而导致EMW的强烈反射。在此,提出了一种具有受孔雀羽小枝启发的仿生微观结构的ZrB基陶瓷。作为ZrB基材料内部极化中心的氮化硼纳米管会导致大量的EMW耗散。该陶瓷显示出9.6 GHz的超宽带吸收(在8.4至18 GHz范围内<-10 dB),几乎覆盖了整个X和Ku波段,优于已报道的陶瓷。通过仿生羽小枝穿插微观结构,极化中心成功地将ZrB基陶瓷从EMW反射材料转变为优异的EMW吸收材料。该陶瓷的模拟超材料在2至40 GHz范围内实现了超宽带吸收(低于-15 dB)。这项工作为高温环境下宽带吸收材料的开发提供了有价值的见解。

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