一个耐高温的隐形带通/带停止-可切换频率选择性metasurface
Gengyuan Bao1, Peng Li1, Jing Sun1
1State Key Laboratory of Electromechanical Integrated Manufacturing of High-Performance Electronic Equipments, Xidian University, Xi'an 710071, China.
Micromachines
|August 29, 2024
概括
这项研究引入了一种新型的频率选择性超表面 (FSM) 对于高速车辆. FSM使用液体金属 (LM) 进行调节带通/带止性能和高温有效散热.
科学领域:
- 电磁超材料 电磁超材料
- 先进的材料科学科学 材料科学
- 航空航天工程 航空航天工程
背景情况:
- 高速车辆在运行时会产生极端的温度,这对车载电子系统构成挑战.
- 现有的频率选择性表面往往缺乏适应性和在恶劣的热条件下强大的性能.
研究的目的:
- 开发适用于高温环境的带通/带止切换频率选择性超表面 (FSM).
- 集成液体金属 (LM) 进行可调节的电磁响应和热管理.
- 为了实现隐形应用的低雷达截面 (RCS) 特性.
主要方法:
- 使用耐高温介电基板制造空腔结构.
- 将液态金属 (LM) 集成到金属表面,以获得可调节的电磁性质.
- 实验验证FSM的热电阻,可切换性和低RCS.
主要成果:
- 证明可切换带宽 (5.53-6.51 GHz) 和带停止 (5.30-5.76 GHz) 特性.
- 通过LM流动性实现显著的温度降低 (数量级),用于散热.
- 与金属板相比,报告的RCS显著减少 (22.35dB带止,36.79dB带通)
结论:
- 开发的FSM表现出耐高温性,带通/带止切换性和低RCS.
- 液体金属集成提供有效的热管理和可调节的电磁功能.
- 在高速飞机应用中,FSM是一个有前途的技术.
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