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Controllable wettability of metallic surfaces via micro-nano structure fabricated by femtosecond laser

机译:通过Femtosecond激光器制造的微纳米结构可控金属表面的润湿性

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Micro-pits array structure, micro-gratings structure covered with finer nanostructures were generated on titaniumsurfaces using femtosecond laser pulse. The wetting behavior of the two types of surface structures were studied. Micropitsarray structure with a size of dozens of microns exhibits hydrophilic properties, and the hydrophilicity increased withincreasing the number of laser pulses. Micro-gratings structure covered with finer nanostructures exhibits hydrophobicproperties, and the hydrophobicity increased with decreasing the laser energy density. The results demonstrated thatwettability of metallic surface can be facilely controlled by adjusting the femtosecond laser processing parameters. Theformation processes of the two types of surface microstructures as well as the underlying mechanisms for their specialwettability are also discussed. This research might provide a facile controllable strategy to realize special wettability formetal or other solid surfaces, even expand the functions and applications of metals.
机译:微坑阵列结构,用更细纳米结构覆盖的微光栅结构在钛上产生使用飞秒激光脉冲的表面。研究了两种类型的表面结构的润湿行为。微米针尺寸为几十微米的阵列结构表现出亲水性,亲水性增加增加激光脉冲的数量。用更细的纳米结构覆盖的微光栅结构表现出疏水性的性能,疏水性随着激光能量密度的降低而增加。结果表明通过调节飞秒激光加工参数,可以易于控制金属表面的润湿性。这两种类型的表面微结构的形成过程以及其特殊的潜在机制还讨论了润湿性。该研究可以提供可控的可控策略来实现特殊的润湿性金属或其他固体表面,甚至扩大金属的功能和应用。

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