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利用粒子排列技术设计和制造用于雷达罩应用的频率选择表面加热元件。

Design and fabrication of frequency selective surface-based heating elements for radome applications using particle alignment technology.

作者信息

Yoon Daeyeong, Park Chul-Oh, Kim Jae-Ho, Park Yong Bae

机构信息

LIG Nex1, Yongin, 16911, South Korea.

Department of Molecular Science & Technology, Ajou University, Suwon, 16499, South Korea.

出版信息

Sci Rep. 2025 Mar 26;15(1):10473. doi: 10.1038/s41598-025-93398-3.

Abstract

This paper presents a novel frequency selective surface (FSS) with embedded heating elements for radome applications, addressing the critical challenge of maintaining electromagnetic performance while providing effective de-icing capabilities. The proposed structure uniquely separates heating elements from radio wave transmission components, enabling independent control of thermal and electromagnetic characteristics. A bottom-up fabrication approach utilizing particle alignment technology was developed, achieving precise control of heating wire dimensions with minimum line widths of 1 µm and surface roughness below Rz 0.3 µm. The fabricated FSS demonstrated excellent transmission characteristics at 32 GHz with -0.298 dB (93.4%) for TE polarization and -0.283 dB (93.7%) for TM polarization, maintaining broad -1 dB transmission bandwidths. Thermal performance tests showed temperature increases exceeding 50 °C within 3 minutes under 12 VDC bias, while mechanical reliability tests confirmed durability through 5000 bending cycles at various curvature radii. The structure's equivalent circuit model was developed and validated, explaining the polarization-dependent characteristics. This approach effectively resolves the traditional trade-off between heating and electromagnetic performance, offering a promising solution for high-performance radome applications requiring both thermal management and radio wave transmission capabilities.

摘要

本文提出了一种用于天线罩应用的带有嵌入式加热元件的新型频率选择表面(FSS),解决了在提供有效除冰能力的同时保持电磁性能这一关键挑战。所提出的结构独特地将加热元件与无线电波传输组件分离,实现了对热特性和电磁特性的独立控制。开发了一种利用粒子排列技术的自下而上的制造方法,实现了对加热线尺寸的精确控制,最小线宽为1 µm,表面粗糙度低于Rz 0.3 µm。所制造的FSS在32 GHz时表现出优异的传输特性,TE极化时为-0.298 dB(93.4%),TM极化时为-0.283 dB(93.7%),保持了较宽的-1 dB传输带宽。热性能测试表明,在12 VDC偏置下,3分钟内温度升高超过50°C,而机械可靠性测试通过在各种曲率半径下进行5000次弯曲循环证实了其耐久性。开发并验证了该结构的等效电路模型,解释了极化相关特性。这种方法有效地解决了加热与电磁性能之间的传统权衡问题,为需要热管理和无线电波传输能力的高性能天线罩应用提供了一种有前景的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6417/11947444/bf98cfd7e34f/41598_2025_93398_Fig1_HTML.jpg

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