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用于电信线路防冰/除冰的具有极高耐压性的柔性蘑菇状跨尺度表面

Flexible Mushroom-Like Cross-Scale Surface with Extreme Pressure Resistance for Telecommunication Lines Anti-Icing/Deicing.

作者信息

Wang Xiaopeng, Yang Yi, Xuan Sensen, Li Guoqiang, Liu Jiasong, Song Yuegan, Wang Yuan, Ge Yucai, Li Xiaoxin, Long Yi, Zeng Qin, Li Huijuan, Yu Jiaxin

机构信息

School of Manufacture Science and Engineering, Key Laboratory of Testing Technology for Manufacturing Process, Ministry of Education, Southwest University of Science and Technology, Mianyang 621010, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 22;17(3):5550-5561. doi: 10.1021/acsami.4c20908. Epub 2025 Jan 7.

Abstract

Ice accretion caused by freezing rain or snowstorms is a common phenomenon in cold climates that seriously threatens the safety and reliability of telecommunication lines and other overhead networks. Various anti-icing strategies have been demonstrated through surface engineering to delay ice formation. However, existing anti-icing surfaces still encounter several challenges; for example, surfaces are prone to ice-pinning formation due to the impact of supercooled droplets, which leads to a loss of anti-icing effectiveness. In this study, a mushroom-like cross-scale surface (MCS) with extreme pressure resistance and superior anti-ice-pinning property was reported. Specifically, the designed MCS, featuring multiscale microfeatures, re-entrant structure, heterogeneous sidewalls, and nanoscale particles, exhibits excellent anti-icing properties. Ice formation was determined to occur through a process involving liquid penetration, condensation, icing, and frost filling. By establishing an anti-ice -pinning model and a bubble column model, the relationship between structural characteristics and anti-icing performance was clarified. The MCS demonstrates excellent static liquid repellency (contact angle >167°) and robust dynamic impact resistance (water impact with Weber number ≥300). Furthermore, it exhibits an ultralow ice adhesion strength of 0.46 kPa. Notably, the ice adhesion strength remains below 5 kPa even after 15 deicing cycles. The anti-ice-pinning mechanism and robust icephobicity induced by the micromorphologies of MCS provide valuable insights for effective anti-icing prospects in telecommunication line surfaces and other areas in the field of information and communication technology.

摘要

冻雨或暴风雪造成的积冰是寒冷气候中的常见现象,严重威胁着电信线路和其他架空网络的安全与可靠性。通过表面工程已展示了各种防冰策略以延缓结冰。然而,现有的防冰表面仍面临若干挑战;例如,由于过冷液滴的影响,表面容易形成冰钉,这会导致防冰效果丧失。在本研究中,报道了一种具有极高耐压性和卓越抗冰钉性能的蘑菇状跨尺度表面(MCS)。具体而言,所设计的MCS具有多尺度微观特征、凹腔结构、异质侧壁和纳米级颗粒,展现出优异的防冰性能。确定结冰过程包括液体渗透、凝结、结冰和霜填充。通过建立抗冰钉模型和鼓泡塔模型,阐明了结构特征与防冰性能之间的关系。MCS表现出优异的静态液体排斥性(接触角>167°)和强大的动态抗冲击性(韦伯数≥300的水冲击)。此外,它还具有0.46 kPa的超低冰粘附强度。值得注意的是,即使经过15次除冰循环,冰粘附强度仍保持在5 kPa以下。MCS微观形貌所诱导的抗冰钉机制和强大的憎冰性为电信线路表面及信息通信技术领域其他区域的有效防冰前景提供了有价值的见解。

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