微槽尺寸对铝表面疏水性的影响

Yanling Wan, B. Dong, Lining Xu, Jinkai Xu, Huadong Yu, Zhanjiang Yu
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引用次数: 0

摘要

本文采用高速线切割放电机床在铝合金表面设计了微槽结构。用该方法制备了具有微结构的多尺度表面。本文设计了一系列不同的槽距、槽深和槽宽,并采用正交设计分析了微结构尺寸与材料润湿性的关系。结果表明:沟槽宽度对材料表面润湿性的影响最大,当沟槽间距为300μm、沟槽深度为100μm、沟槽宽度为230μm时,材料表面的接触角最大,为155.98°;通过对表面的观察可知,沟槽结构的存在可以大大减小液滴与固体表面的接触面积。此外,这些凹槽密封了大量的空气,增加了液滴与空气的接触面积,使固体表面不易被液滴润湿。利用光学组合来实现表面润湿性的变化是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of micro-groove size on the hydrophobicity of aluminum surface
In this paper, the micro-groove structure is designed on the surface of aluminum alloy by high speed wire cutting discharge machine (HS-WEDM). A multi-scale surface with micro structure was fabricated by this method. The paper design a series different groove spacing, groove depth and groove width and orthogonal design was using to analyze the relationship between the size of micro structure and the wettability of materials. The results show that the effect of the groove width on surface wettability is maximum, When the the groove spacing is 300μm, the groove depth is 100μm and the width of the groove is 230μm, the contact angle of the material surface is maximum, which is 155.98°. After observing the surface, it is can be known that the existence of groove structure can reduce the droplet and solid surface contact area greatly. In addition, these grooves sealed a plenty of air to increase the contact area of the droplet and the air that the solid surface are difficult to be wetted by droplets. It is feasible that realizing the change of the surface wettability by using optical combination.
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