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一种具有优异微波吸收性能的新型频率选择表面增强复合蜂窝吸波器。

A Novel Frequency-Selective Surface-Enhanced Composite Honeycomb Absorber with Excellent Microwave Absorption.

作者信息

Xian Yu-Xuan, Yang Jin-Shui, Li Hong-Zhou, Xu Chang, Wang Xiang-Wei

机构信息

Harbin Engineering University, Harbin 150001, China.

Qingdao Innovation and Development Center, Harbin Engineering University, Qingdao 266000, China.

出版信息

Polymers (Basel). 2024 Nov 27;16(23):3312. doi: 10.3390/polym16233312.

Abstract

Multifunctional structures with excellent wave-absorbing and load-bearing properties have attracted much attention in recent years. Unlike other wave-absorbing materials, honeycomb wave-absorbing materials have appealing radar absorption and mechanical properties. However, the existing honeycomb wave-absorbing materials have problems such as narrow absorption band and poor compression resistance. In this study, a novel frequency selective surface-enhanced composite honeycomb absorbers (FSS-CHAs) are fabricated by combining a honeycomb structure with wonderful load-bearing capacity and FSS through screen-printing and inlay-locking techniques. After reflectivity measurements, the effective absorption band (RL < -10 dB) of CHA is 6.25-17.47 GHz and a bandwidth of 11.22 GHz, the effective absorption band of the FSS-CHA is 3.96-18 GHz and a bandwidth of 14.04 GHz, 25.13% improvement compared to the CHA, the mechanism of wave absorption is explained using transmission line theory. The simulation results show that the wide bandwidth is due to the different absorption mechanisms of FSS-CHA at low and high frequencies. The compression test shows that the compression strength of FSS-CHA is 17.10 MPa. In addition, FSS-CHA has a low cost of only USD 270.7/m. This study confirms the possibility of combining FSS with radar-absorbing honeycombs, which provides a reference for the design of future broadband wave-absorbing structures, offers a novel approach to integrating FSS with CHA, and aims to optimize their efficacy and utility in stealth technology.

摘要

近年来,具有优异吸波和承载性能的多功能结构备受关注。与其他吸波材料不同,蜂窝吸波材料具有吸引人的雷达吸收和力学性能。然而,现有的蜂窝吸波材料存在吸收带宽窄和抗压性差等问题。在本研究中,通过丝网印刷和镶嵌锁定技术,将具有出色承载能力的蜂窝结构与频率选择表面(FSS)相结合,制备了一种新型的频率选择表面增强复合蜂窝吸波器(FSS-CHAs)。经过反射率测量,CHA的有效吸收带宽(RL < -10 dB)为6.25 - 17.47 GHz,带宽为11.22 GHz,FSS-CHA的有效吸收带宽为3.96 - 18 GHz,带宽为14.04 GHz,比CHA提高了25.13%,并使用传输线理论解释了吸波机制。模拟结果表明,宽带宽是由于FSS-CHA在低频和高频的吸收机制不同。压缩试验表明,FSS-CHA的压缩强度为17.10 MPa。此外,FSS-CHA成本低,仅为270.7美元/平方米。本研究证实了将FSS与雷达吸收蜂窝相结合的可能性,为未来宽带吸波结构的设计提供了参考,为FSS与CHA的集成提供了一种新方法,旨在优化它们在隐身技术中的功效和实用性。

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