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A Feasibility Study of Superhydrophobic Coating on Al6061 for Airplane Anti-icing Applications

机译:AL6061对飞机防冰应用的超疏水涂层的可行性研究

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Ice protection systems are essential for all airplane operational missions to ensure safe and reliable operation of air transport. Typically, size and contact area of cold droplets are the deciding factors for the type of ice spreading over the airplane surface. Preparation of superhydrophobic surfaces has received a great attention in the recent years to minimize the ice nucleation over the airplane skin. In this article, Aluminum alloy Al6061 is used to prepare a protective, textured superhydrophobic coating through chemical spray coating techniques. A cost-effective superhydrophobic coating has been developed by chemical etching and spray coating of copolymeric silicone composition that is confirmed by Infrared technique. Morphological studies by optical microscope show a micro-nano rough pattern that increases with the weight percentage content of the silicone film sprayed after drying. At an optimum 5% of silicone, contact angle reaches a maximum value of 154 ± 2°. This superhydrophobic coating offers interesting icephobic properties and the Aluminum surface is tested for its ice repelling property by spraying the supercooled liquid over the surface. The anti-icing coated substrate was further tested for wear and corrosion properties to meet the airworthiness standards. This superhydrophobic coating can be applied for various offshore applications such as wind turbines, and automobile windscreens as it reduces ice adhesion to achieve higher safety measures.
机译:冰保系统对于所有飞机运营任务至关重要,以确保空运的安全可靠。通常,冷液滴的尺寸和接触面积是飞机表面上冰的类型的决定因素。近年来,超疏水表面的制备得到了极大的关注,以尽量减少飞机皮肤上的冰核。在本文中,铝合金AL6061用于通过化学喷涂技术制备保护性纹理的超疏水涂层。通过通过红外技术证实的共聚物硅氧烷组合物的化学蚀刻和喷涂,开发了一种经济高效的超疏水涂层。光学显微镜的形态学研究显示了一种微纳米粗糙度,随着干燥后喷涂的硅胶薄膜的重量百分比含量而增加。在最佳5%的硅树脂中,接触角达到最大值为154±2°。该超疏水涂层提供有趣的冰冻性能,并且通过将过冷液体在表面上喷涂来测试其冰块的冰冻性能。进一步测试抗糖霜涂覆的基材以磨损和腐蚀性,以满足适航标准。这种超疏水涂层可用于各种近海应用,例如风力涡轮机和汽车挡风玻璃,因为它降低了冰粘合以实现更高的安全措施。

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