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Fabrication of Anti-Reflective Surface with Superhydrophobicity/High Oleophobicity and Enhanced Mechanical Durability via Nanosecond Laser Surface Texturing

机译:通过纳秒激光表面纹理制备具有超疏水性/高疏化性的抗反射表面和提高机械耐久性

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摘要

In this work, anti-reflective surface with superhydrophobicity/oleophobicity and enhanced abrasion resistance was fabricated on steel alloy surface. Two different surface patterns (i.e., parallel microgrooves and spot arrays) were created by nanosecond laser ablation and chemical immersion. The surface microanostructure, spectral reflectance, wettability, and abrasion resistance of all the samples were determined. The experimental results showed that the laser-chemical treated surfaces exhibited much lower spectral reflectance and significantly enhanced surface integrities compared with the untreated surface. Firstly, the contact angles of water, glycerol, and engine oil on the laser-chemical treated surfaces were increased up to 158.9°, 157.2°, and 130.0° respectively, meaning the laser-chemical treated surfaces achieved both superhydrophobicity and high oleophobicity. Secondly, the laser-chemical treated surface showed enhanced abrasion resistance. The experimental results indicated that the spectral reflectance of the laser-chemical treated surfaces remained almost unchanged, while the laser-chemical treated surface patterned with parallel microgrooves sustained superhydrophobicity with a water contact angle of 150.2° even after more than one hundred abrasion cycles, demonstrating the superior mechanical durability. Overall, this fabrication method has shown its effectiveness for fabrication of multifunctional metal surface integrating the surface functionalities of anti-reflectivity, superhydrophobicity/high oleophobicity, and enhanced abrasion resistance.
机译:在这项工作中,在钢合金表面制造具有超疏水性/疏油性和增强耐磨性的抗反射表面。通过纳秒激光烧蚀和化学浸渍产生两种不同的表面图案(即平行的微射线和斑点阵列)。确定了表面微/纳米结构,光谱反射率,润湿性和所有样品的耐磨性。实验结果表明,与未处理的表面相比,激光化学处理表面表现出远低光谱反射率和显着增强的表面完整性。首先,激光 - 化学处理表面上的水,甘油和发动机油的接触角度分别增加了158.9°,157.2°和130.0°,这意味着激光化学处理表面均可实现超疏水性和高疏油性。其次,激光化学处理表面显示出增强的耐磨性。实验结果表明,激光 - 化学处理表面的光谱反射率几乎保持不变,而激光 - 化学处理表面与平行的微腔持续超细纤维性,即使在超过一百次磨损循环之后,也具有150.2°的水接触角。卓越的机械耐久性。总的来说,这种制造方法表明了其对整合抗反射率,超疏水性/高疏化性和增强耐磨性的表面官能团的多功能金属表面的有效性。

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