基于超疏水表面的主被动复合防/除冰技术研究进展

许露晴, 石珍旭, 刘祯达, 刘蕊迪, 杨邱程, 潘梦瑶, 刘森云, 王德辉, 邓旭

表面技术 ›› 2023, Vol. 52 ›› Issue (12) : 135-146.

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PDF(9627 KB)
表面技术 ›› 2023, Vol. 52 ›› Issue (12) : 135-146. DOI: 10.16490/j.cnki.issn.1001-3660.2023.12.012
专题——表面润湿性调控及应用

基于超疏水表面的主被动复合防/除冰技术研究进展

  • 许露晴1, 石珍旭1, 刘祯达1, 杨邱程1, 潘梦瑶1, 王德辉1, 邓旭1, 刘蕊迪2, 刘森云2
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Research Progress of Active/Passive Composite Anti/De-icing Technologies Based on Superhydrophobic Surfaces

  • XU Lu-qing1, SHI Zhen-xu1, LIU Zhen-da1, YANG Qiu-cheng1, PAN Meng-yao1, WANG De-hui1, DENG Xu1, LIU Rui-di2, LIU Sen-yun2
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摘要

介绍了光热、电加热、磁能、声波能与超疏水表面相结合的主被动复合防/除冰技术及其机理与应用,阐述了以上复合型防/除冰技术的优势与不足。其中,光热复合技术具有耗能低、材料选择多样化等优点;电加热复合技术工艺简单,易于规模化制造;磁能复合技术可满足复杂场景的防/除冰应用需求;声波复合技术则具有结构简单的优势。此外,同时复合多种能场可进一步提升防/除冰工作效率,是主被动复合技术的发展趋势之一。最后,阐述了基于超疏水表面的主被动复合防/除冰技术的不足之处,并展望了复合防/除冰技术的应用研究前景。

Abstract

The work aims to introduce composite anti-/deicing methods that combine superhydrophobic surfaces with active anti-icing methods of photothermal treatment, heating, magnetic energy, and acoustic energy, along with their mechanisms and applications. The advantages and shortcomings of the composite anti-/deicing technologies were summarized. Among them, the photothermal composite technology showed low energy consumption and diverse choice on materials. The electric heating composite technology possessed a simple process and was beneficial to preparation in a large area. The magnetic energy composite technology satisfied the needs of anti-/deicing in complex scenes. The acoustic wave composite technology had a simple structure. In addition, the simultaneous combination of multiple energy fields could further enhance the efficiency of anti/deicing performance, so it was one of the trends for developing active-passive composite technologies. Finally, the shortcomings of the current active-passive composite technologies were elaborated based on superhydrophobic surfaces, and the application of those composite anti-/deicing technologies was prospected.

关键词

超疏水;电加热;光热;磁能;声波能;防/除冰;主被动复合式

Key words

superhydrophobic; heating; photothermal; magnetic energy; acoustic energy; anti/deicing; active-passive composite

引用本文

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许露晴, 石珍旭, 刘祯达, 刘蕊迪, 杨邱程, 潘梦瑶, 刘森云, 王德辉, 邓旭. 基于超疏水表面的主被动复合防/除冰技术研究进展[J]. 表面技术. 2023, 52(12): 135-146
XU Lu-qing, SHI Zhen-xu, LIU Zhen-da, LIU Rui-di, YANG Qiu-cheng, PAN Meng-yao, LIU Sen-yun, WANG De-hui, DENG Xu. Research Progress of Active/Passive Composite Anti/De-icing Technologies Based on Superhydrophobic Surfaces[J]. Surface Technology. 2023, 52(12): 135-146

基金

中国空气动力研究与发展中心结冰与防除冰重点实验室开放课题(IADL20210411)

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