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Controlling the Wetting Properties of Superhydrophobic Titanium Surface Fabricated by UV Nanosecond-Pulsed Laser and Heat Treatment

机译:UV纳秒脉冲激光和热处理控制超疏水钛表面的润湿性能

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摘要

In this study, the effects of nanosecond-pulsed laser and pattern design were researched on the wettability of titanium material. Nanosecond-pulsed laser and heat treatment are used to fabricate superhydrophobic titanium surfaces. The effects of laser power (1–3 W) and step size (50–300 µm) on a microscale patterned titanium surface (line pattern and grid pattern) were investigated to explain the relation between microstructure and superhydrophobicity. The surface morphologies and wettability of the surfaces were analyzed by three-dimensional confocal microscopy and a contact angle meter. The results show that the laser power and pattern design affected the apparent contact angle (CA) and sliding angle (SA). The maximum step size, which could show superhydrophobicity with apparent CA > 150° and SA < 10°, was increased when the laser power increased from 1 to 3 W. Grid pattern showed isotropic wetting behavior, but line pattern showed both isotropic and anisotropic wetting behavior according to step size and laser power. Furthermore, when choosing the proper laser power and step size, the wetting properties of superhydrophobic surface such as lotus effect (apparent CA > 150° and SA < 10°) and petal effect (apparent CA > 150° and no SA) and isotropic/anisotropic behavior can be controlled for applications of water droplet control.
机译:在这项研究中,研究了纳秒脉冲激光和图案设计对钛材料润湿性的影响。纳秒脉冲激光和热处理用于制造超疏水钛表面。研究了激光功率(1-3 W)和步长大小(50-300 µm)对微细图案钛表面(线条图案和网格图案)的影响,以解释微观结构与超疏水性之间的关系。通过三维共聚焦显微镜和接触角仪分析表面的表面形态和润湿性。结果表明,激光功率和图案设计会影响视在接触角(CA)和滑动角(SA)。当激光功率从1 W增加到3 W时,最大步长会增加,并具有明显的CA> 150°和SA <10°的超疏水性。网格图案表现出各向同性的润湿行为,而线状图案表现出各向同性和各向异性的润湿行为取决于步长和激光功率。此外,当选择合适的激光功率和步长时,超疏水表面的润湿特性,例如荷叶效应(表观CA> 150°,SA <10°)和花瓣效应(表观CA> 150°,无SA)和各向同性/可以控制水滴的各向异性行为。

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