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Wet-adhesion properties of microstructured surfaces inspired by newt footpads

机译:由Newt Toppads启发的微结构表面的湿粘附性能

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To understand wet adhesion of newt foot pads, we firstly examined and evaluated the attachment and climbing abilities of newts under three different wetting conditions. Then we characterized the micro and nanostructures of newts' foot pads by using the scanning electron microscopy. Followed by observing the micro and nanoscale structural features of newts' foot pads, four different micropatterns, including round pillars, hexagonal pillars, and two hybrid patterns with closed and semi-closed hexagonal ridges, were designed and fabricated on PDMS. The static friction and adhesion of microstructured surfaces were measured by using a multi-functional surface meter and an adhesion testing equipment, respectively. Effects of micropattern on static friction, and effects of retraction speed, amount of liquid, approach-retraction cycle on adhesion were investigated experimentally. Results suggested that a larger amount of liquid decreases the adhesion and friction, but a little liquid increases the adhesion and friction. It was found that there exists an optimum amount of liquid (about 0.1 mu l) that can enhance the adhesion. Our results can give insights into the repeated shear movements of a newt's foot pads in the stream condition as well as the possible functions of dense nanopillar arrays on newt foot pads.
机译:为了了解蝾螈脚垫的湿粘附,我们首先检查了蝾螈在三种不同的润湿条件下的附着和攀爬能力。然后我们通过使用扫描电子显微镜表征蝾螈脚垫的微型和纳米结构。然后在PDMS上设计并制造在PDMS上设计并制造了纽特脚垫的微型和纳米级结构特征,包括圆柱,包括圆柱,六边形柱,以及两个具有闭合和半封闭六角脊的混合图案。通过使用多功能表面表和粘合测试设备,测量微结构化表面的静摩擦和粘附。微图案对静态摩擦的影响,以及缩回速度,液体量,液体,接近粘附循环对粘合性的影响。结果表明,较大量的液体降低了粘附性和摩擦力,但是一点液体增加了粘附和摩擦。发现存在可以增强粘合性的最佳液体(约0.1μl)。我们的结果可以深入了解流条件中蝾螈脚垫的重复剪切运动,以及纽特脚垫上的密集纳米玻璃阵列的可能功能。

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