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Rf-Sputtered Teflon?-Modified Superhydrophobic Nanostructured Titanium Dioxide Coating on Aluminum Alloy for Icephobic Applications

机译:RF-溅射的Teflon? - 用于冰冻应用的铝合金上的二氧化二氧化钛二氧化钛涂层

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Icing on surfaces such as cables or high-voltage insulators may often lead to severe safety issues such as power outages in cold winter conditions. Conventional methods used to tackle such icing problems include mechanical deicing, where the ice is scraped or broken, and chemical deicing, where deicers such as ethylene glycol are used. However, the best approach to addressing these issues is to prevent ice formation in the first place. Research in the past few decades have shown hydrophobic and superhydrophobic surfaces to be effective in reducing ice adhesion. We used the concept of water repellency to turn an aluminum surface superhydrophobic to minimize ice adhesion on these surfaces. However, to render these surfaces also applicable to insulating surfaces, we also demonstrated the adaptability of the concept on a low dielectric oxide, TiO2, to an aluminum surface with icephobic properties. This work demonstrates the importance of the coexistence of rough nanostructures as well as low-surface-energy compositions on a surface to make it superhydrophobic and icephobic and is applicable on metals and insulating surfaces.
机译:在电缆或高压绝缘体等表面上的冰可能常常导致严重的安全问题,例如寒冷的冬季条件下的停电。用于解决这种结冰问题的常规方法包括机械除冰,其中冰被刮擦或破裂,以及化学除冰,其中使用诸如乙二醇的脱落剂。然而,解决这些问题的最佳方法是在首先防止冰形成。过去几十年的研究表明,疏水性和超疏水性表面有效减少冰粘附。我们使用防水性的概念来转动铝表面超疏水,以最小化这些表面上的冰粘附。然而,为了使这些表面也适用于绝缘表面,我们还证明了概念在低介电氧化物TiO 2上的适应性,TiO 2,含有冰冻性质。这项工作证明了粗纳米结构的共存以及表面上的低表面能成分来使其超疏水和冰冻的重要性,并且适用于金属和绝缘表面。

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