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首页> 外文期刊>Journal of nanomaterials >Glaze Icing on Superhydrophobic Coating Prepared by Nanoparticles Filling Combined with Etching Method for Insulators
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Glaze Icing on Superhydrophobic Coating Prepared by Nanoparticles Filling Combined with Etching Method for Insulators

机译:纳米粒子填充与蚀刻法结合制备绝缘子超疏水涂层釉

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Icing on insulators may cause flashover or even blackout accidents in the power transmission system. However, there are few anti-icing techniques for insulators which consume energy or manpower. Considering the water repelling property, the superhydrophobic surface is introduced for anti-icing of insulators. Among the icing forms, the glaze icing owns the highest density, strongest adhesion, and greatest risk to the power transmission system but lacks researches on superhydrophobic surface. In this paper, superhydrophobic surfaces with contact angle of 166.4°, contact angle hysteresis of 0.9°, and sliding angle of less than 1° are prepared by nanoparticle filling combined with etching method. The coated glass slide and glass insulator showed excellent anti-icing performance in the glaze icing test at −5°C. The superhydrophobicity and anti-icing property of the coatings benefit from the low surface energy and hierarchical rough structure containing micron scale pits and nanoscale coralloid bulges supported by scanning electron microscopy (SEM), atomic force microscopy (AFM), and X-ray photoelectron spectroscopy (XPS) characterization.
机译:绝缘子上的结冰可能会导致输电系统闪络甚至停电事故。但是,很少有消耗能量或人力的绝缘子的防冰技术。考虑到拒水性能,引入超疏水表面用于绝缘子的防冰。在这些结冰形式中,釉面结冰具有最高的密度,最强的附着力以及对动力传输系统的最大风险,但是缺乏对超疏水表面的研究。本文通过纳米颗粒填充与刻蚀相结合的方法制备了接触角为166.4°,接触角滞后为0.9°,滑动角小于1°的超疏水表面。涂层玻璃载玻片和玻璃绝缘体在-5°C的釉面结冰测试中显示出优异的抗结冰性能。涂层的超疏水性和防冰性能得益于扫描电镜(SEM),原子力显微镜(AFM)和X射线光电子能谱所支持的低表面能和分层的粗糙结构,其中包含微米级的凹坑和纳米级珊瑚状凸起(XPS)表征。

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