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Pillar versus dimple patterned surfaces for wettability and adhesion with varying scales

机译:柱形与凹痕图案表面可实现不同尺度的润湿性和附着力

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摘要

Inspired by biological topographical surfaces, micropatterned elastomeric surfaces with square pillars and dimples of different geometry scales were fabricated. Their wettability and adhesion properties with various liquids were systematically investigated and compared with flat surfaces. Interesting results were obtained in the case of silicone oil (the toe-pad-like wetting case) in that the scale-dependent wettability and adhesion performed inversely for pillars and dimples. Micropillars significantly enhanced the surface wettability with a geometry scale dependence, whereas the dimples suppressed the wettability independent of the geometry scale. The adhesion force of the micropillars increased with an increase of the geometry scale. However, in the case of the micro-dimples, the adhesion force obviously decreased with an increase of the geometry scale. This behaviour was attributed to the fact that pillars are ‘open’ to oil but dimples are ‘close’ to oil, presenting different orientations to the solid–liquid interface.
机译:受生物地形表面的启发,制作了具有方柱和具有不同几何尺度的酒窝的微图案弹性体表面。系统地研究了它们在各种液体中的润湿性和粘附性,并与平坦表面进行了比较。在硅油的情况下(脚趾垫状的润湿情况)获得了有趣的结果,因为与比例有关的润湿性和附着力与支柱和酒窝成反比。微柱显着提高了表面润湿性,并具有几何尺寸比例,而酒窝则抑制了润湿性,而与几何尺寸无关。微柱的附着力随着几何尺寸的增加而增加。但是,在微凹痕的情况下,附着力随着几何尺寸的增加而明显降低。这种现象归因于以下事实:支柱对油“开放”,而酒窝对油“接近”,对固-液界面呈现不同的方向。

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