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Femtosecond laser fabrication of superhydrophobic metallic surfaces with anti-icing properties

机译:抗糖霜性能超疏水金属表面的飞秒激光制造

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Many surfaces in nature, e.g. lotus leaf, exhibit superhydrophobicity. Some of the most attractive applications of these surfaces are based on their self-cleaning properties and anti-icing capability. Many strategies are used by researchers to replicate these natural phenomena on metallic substrates. Among them, short/ultrashort pulsed laser technologies can functionalize surfaces with micro/nano-textures enabling strong water-repellent properties and low adhesiveness, which represent a promising solution to anti-icing properties. In this work, several patterns of micro-structures were textured by femtosecond laser on metallic materials of aeronautic and aerospace interest. The wettability properties of the surfaces were investigated in terms of water contact angle (CA) under different ambient conditions. The reversibility of the sample superhydrophobicity after exposure to a highly humid environment was studied. Water-dripping tests were carried out at subzero temperature finding that, while the untreated samples were covered with ice, no frozen spot was observed on the superhydrophobic textured surfaces.
机译:大自然中的许多表面,例如。莲花,表现出超细侵害。这些表面的一些最具吸引力的应用是基于其自清洁性能和防结冰能力。研究人员使用许多策略来复制金属基材上的这些自然现象。其中,短/超级脉冲激光技术可以用微/纳米纹理官能化,从而实现具有强的防水性和低粘合性,这代表了对抗糖霜性能的有希望的解决方案。在这项工作中,在航空航天利益的金属材料上由飞秒激光构成了几种微结构模式。在不同的环境条件下,在水接触角(CA)方面研究了表面的润湿性。研究了在暴露于高度潮湿环境后的样品超细管性的可逆性。在亚单温度下进行水滴试验,同时未经处理的样品覆盖着冰,在超疏水织地带表面上没有观察到冷冻斑点。

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