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Improving the Laser Texture Strategy to Get Superhydrophobic Aluminum Alloy Surfaces

机译:改善激光纹理策略以获得超疏水铝合金表面

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摘要

Changing the wetting properties of surfaces is attracting great interest in many fields, in particular to achieve a surface with a superhydrophobic behavior. Laser machining is an emerging technique to functionalize materials with high precision and flexibility without any chemical treatment. However, when it is necessary to treat large area surfaces laser-based methods are still too slow to be exploited in industrial productions. In this work, we show that by improving the laser texture strategy it is possible to reduce the laser processing time to produce superhydrophobic aluminum alloy surfaces. Three different surface texture geometries were micromachined; namely, square, circular and triangular lattice grooves. We found that if the spacing between the grooves is narrow, i.e., when the percentage of the textured surface is high, the volume of air trapped inside the micromachined structures plays an important role in the wetting behavior. Meanwhile, when the groove spacing approaches the droplet dimensions, the texture geometry has a preponderant influence. Based on these findings an appropriate choice of the laser texture strategy allowed the fabrication of superhydrophobic aluminum alloy surfaces with a 10% reduction of processing time.
机译:改变表面的润湿性能吸引了很多领域的重大利益,特别是实现了表面超疏水行为。激光加工是一个新兴的技术官能化与高精度和灵活性的材料,没有任何化学处理。然而,当需要处理大面积的表面基于激光的方法仍然太慢,在工业生产中被利用。在这项工作中,我们表明,通过提高激光纹理策略也能够减少激光加工时间,以产生超疏水铝合金表面。三种不同的表面纹理的几何形状进行了微机械加工;即,正方形,圆形和三角形的格槽。我们发现,如果在沟槽之间的间隔是窄的,即,当有纹理的表面的百分比高时,截留在微机械结构内的空气的体积起着润湿行为中起重要作用。同时,当槽间距接近液滴尺寸,纹理的几何形状具有优势的影响。基于这些发现的激光纹理策略的适当选择允许超疏水铝合金表面的制造与处理时间的减少10%。

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