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Stable Superhydrophobic Aluminum Surfaces Based on Laser-Fabricated Hierarchical Textures

机译:基于激光制造的等级纹理的稳定的超疏水铝表面

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摘要

Laser-microtextured surfaces have gained an increasing interest due to their enormous spectrum of applications and industrial scalability. Direct laser interference patterning (DLIP) and the well-established direct laser writing (DLW) methods are suitable as a powerful combination for the fabrication of single (DLW or DLIP) and multi-scale (DLW+DLIP) textures. In this work, four-beam DLIP and DLW were used independently and combined to produce functional textures on aluminum. The influence of the laser processing parameters, such as the applied laser fluence and the number of pulses, on the resulting topography was analyzed by confocal microscopy and scanning electron microscopy. The static long-term and dynamic wettability characteristics of the laser-textured surfaces were determined through water contact angle and hysteresis measurements, revealing superhydrophobic properties with static contact angles up to 163° and hysteresis as low as 9°. The classical Cassie–Baxter and Wenzel models were applied, permitting a deeper understanding of the observed wetting behaviors. Finally, mechanical stability tests revealed that the DLW elements in the multi-scale structure protects the smaller DLIP features under tribological conditions.
机译:由于其巨大的应用和工业可扩展性,激光 - 微织地面表面增加了越来越兴趣。直接激光干涉图案化(DLIP)和良好的直接激光写入(DLW)方法适合作为制造单个(DLW或DLIP)和多尺度(DLW + DLIP)纹理的强大组合。在这项工作中,独立使用四梁DLIP和DLW,并将其组合以在铝上产生功能性纹理。通过共聚焦显微镜和扫描电子显微镜分析了激光加工参数的影响,例如施加的激光通量和脉冲数量的脉冲的数量。通过水接触角和滞后测量来确定激光纹理表面的静态长期和动态润湿性特性,透露静态接触角度的超疏水性能,高达163°和低至9°的滞后。应用了古典的Cassie-Baxter和Wenzel模型,允许更深入地了解观察到的润湿行为。最后,机械稳定性测试表明,多尺度结构中的DLW元素在摩擦学条件下保护较小的DLIP特征。

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