材料科学
电弧闪光
陶瓷
复合材料
耐久性
硫化
硅橡胶
环境污染
污染
环境科学
硅酮
纳米技术
纳米颗粒
聚合物
耐化学性
超疏水涂料
微观结构
接触角
降级(电信)
使用寿命
天然橡胶
作者
Huijuan Shao,Jiajia Luo,Pengbo Xue,Zhenxu Shi,Bin Sun,Yiming Zhang,Yan Zhou,Zhenbing Luo,Peng Wang,Dehui Wang,Xu Deng
出处
期刊:Small
[Wiley]
日期:2025-09-15
卷期号:21 (43): e07337-e07337
被引量:4
标识
DOI:10.1002/smll.202507337
摘要
Outdoor insulators are prone to pollution flashover caused by water films or contamination accumulation. Although traditional superhydrophobic coatings can stay dry and self-cleaning, their service performance is compromised by poor durability under environmental aging. Here, an armored superhydrophobic ceramic surface is presented, where nanoparticles are bonded into the microstructures via inorganic sintering, thereby eliminating the need for organic polymer bonding layers. For the outdoor application of insulators, their weather resistance is evaluated. This surface exhibits exceptional environmental resistance against water impact, UV radiation, condensation, salt spray, and chemical corrosion. Specifically, accelerated UV aging tests reveal the surface maintains stable superhydrophobicity after 3000 h of exposure, outperforming traditional organic superhydrophobic surfaces more than 60 times. Field exposure results further confirm its functionality over 200 days in real outdoor environments. For pollution flashover resistance, its pollution flashover voltage of the surface surpasses that of room-temperature vulcanized (RTV) silicone rubber and bare ceramic surfaces by 70% and 148%, respectively. This work presents an innovative design strategy for outdoor insulators, which demonstrates promising potential for enhancing power grid stability by mitigating long-term pollution flashover risks through superhydrophobic surfaces with robust weather resistance.
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