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Icephobic Performance of Multi-Scale Laser-Textured Aluminum Surfaces for Aeronautic Applications

机译:用于航空应用的多尺寸激光织物铝表面的冰冻性能

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摘要

Ice-building up on the leading edge of wings and other surfaces exposed to icing atmospheric conditions can negatively influence the aerodynamic performances of aircrafts. In the past, research activities focused on understanding icing phenomena and finding effective countermeasures. Efforts have been dedicated to creating coatings capable of reducing the adhesion strength of ice to a surface. Nevertheless, coatings still lack functional stability, and their application can be harmful to health and the environment. Pulsed laser surface treatments have been proven as a viable technology to induce icephobicity on metallic surfaces. However, a study aimed to find the most effective microstructures for reducing ice adhesion still needs to be carried out. This study investigates the variation of the ice adhesion strength of micro-textured aluminum surfaces treated using laser-based methods. The icephobic performance is tested in an icing wind tunnel, simulating realistic icing conditions. Finally, it is shown that optimum surface textures lead to a reduction of the ice adhesion strength from originally 57 kPa down to 6 kPa, corresponding to a relative reduction of ~90%. Consequently, these new insights will be of great importance in the development of functionalized surfaces, permitting an innovative approach to prevent the icing of aluminum components.
机译:在翅膀的前缘和暴露于糖霜大气条件的其他表面上的冰建设可以对飞机的空气动力学性能产生负面影响。在过去,研究活动的重点是了解糖化现象并找到有效的对策。努力致力于创造能够将冰粘附强度降低到表面的涂层。尽管如此,涂料仍然缺乏功能稳定性,其应用可能对健康和环境有害。已被证明是脉冲激光表面处理作为可行的技术,以诱导金属表面的冰冻效果。然而,旨在找到用于减少冰粘合的最有效微观结构的研究仍然需要进行。本研究研究了使用基于激光的方法处理的微纹理铝表面的冰粘附强度的变化。在冰风隧道中测试冰冻性能,模拟逼真的糖霜条件。最后,显示最佳表面纹理导致从最初57kPa降低到6kPa的冰粘附强度降低,相当于〜90%的相对降低。因此,这些新的见解将在官能化表面的开发方面具有重要意义,允许采用创新的方法来防止铝部件结冰。

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