硬脂酸二氧化硅纳米颗粒超疏水涂层在铝合金架空导线上的长期耐久性

Chengxing Lian, Xu Zhang, Christonher Emersic, R. Lowndes, I. Cotton
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引用次数: 3

摘要

由于结冰事件期间施加的额外机械载荷,冰的积累可能导致架空线路系统的严重损坏和故障。CIGRE TB361详细介绍了一系列先进的超疏水涂层,本文详细介绍了用硬脂酸基涂层涂覆架空线样品的制造过程的复制和优化。该溶液加载二氧化硅(SiO2)纳米颗粒,在铝衬底上实现了3°的滑动角和169°的接触角。本文还介绍了几种老化试验,包括热老化、日冕暴露、紫外线辐射和室外环境暴露。在每次老化测试之前和之后,使用不同的技术对样品进行表征,例如接触角测量和显微镜测试。高温和电晕放电对涂层的超疏水性有较强的降解作用。紫外线照射和室外测试改变了样品的润湿性,导致具有高接触角迟滞的“粘性”表面。试验表明,该涂层在不同老化条件下性能较差,不适合部署在架空电力线路上。
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Long-term Durability of Stearic Acid Silicon Dioxide Nanoparticle Superhydrophobic Coating on Aluminium Alloy Overhead Line Conductors
The accumulation of ice can lead to serious damage and failure of overhead line systems due to the additional mechanical loads applied during icing events. CIGRE TB361 has detailed a range of advanced superhydrophobic coatings and this paper details the replication and optimisation of the manufacturing procedure to coat overhead line samples with a stearic acid-based coating. The solution was loaded with Silicon Dioxide (SiO2) nanoparticles and achieved a sliding angle of 3° and a contact angle of 169°on aluminium substrates. The paper also describes several ageing tests, including thermal ageing, corona exposure, ultraviolet radiation, and outdoor environmental exposure. Samples were characterised using different techniques such as contact angle measurements and microscopy tests before and after each ageing test. High temperature and corona discharge were shown to have a strong degrading effect on coating's superhydrophobicity. Ultraviolet exposure and outdoor tests changed the wettability performance of samples and led to ‘sticky’ surfaces with high contact angle hysteresis. Tests indicated that the coating has poor performance under difference ageing conditions and is unsuitable for deployment onto overhead power lines.
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