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Biomimetic design of elastomer surface pattern for friction control under wet conditions

机译:弹性体表面图案的仿生设计,用于在潮湿条件下控制摩擦

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摘要

In this paper, an observation on the toe pad of a newt was carried out. It was found that the pad surface is covered with an array of polygonal cells separated by channels, similar to those of a tree frog's pad. With this micro-structure, a newt can move on wet and smooth surfaces without slipping. Inspired by the surface structure of newt toe pads, elastic micro-patterned surfaces were fabricated to understand the function of such micro-structures in friction systems. The tribological performance of the patterned surfaces was evaluated using a tribometer. Different tribological performances between micro-dimple and -pillar patterned surfaces were observed. The area density (r) of the micro-pattern is crucial for controlling the friction of the elastic surface. Distinguished from unpatterned and micro-dimple patterned surfaces, the pillar patterned surface with high area density can remain high friction at high sliding speed. It could be one of the reasons of such polygonal structures on newt's toe pads.
机译:在本文中,对a的脚趾进行了观察。发现垫表面覆盖有由通道隔开的多边形细胞阵列,类似于树蛙垫。有了这种微结构,a就可以在潮湿和光滑的表面上移动而不会滑动。受new脚趾垫表面结构的启发,制作了具有弹性的微图案表面,以了解这种微结构在摩擦系统中的功能。使用摩擦计评估图案化表面的摩擦学性能。观察到微凹坑和柱状图案表面之间的摩擦学性能不同。微图案的面积密度(r)对于控制弹性表面的摩擦至关重要。与未图案化和微凹痕图案化表面不同,具有高面积密度的柱状图案化表面可以在高滑动速度下保持高摩擦。这可能是在纽特的脚趾板上形成这种多边形结构的原因之一。

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