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Humidity-enhanced wet adhesion on insect-inspired fibrillar adhesive pads

机译:在昆虫启发的原纤维粘合垫上提高湿度的湿粘合

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摘要

Many insect species reversibly adhere to surfaces by combining contact splitting (contact formation via fibrillar contact elements) and wet adhesion (supply of liquid secretion via pores in the insects’ feet). Here, we fabricate insect-inspired fibrillar pads for wet adhesion containing continuous pore systems through which liquid is supplied to the contact interfaces. Synergistic interaction of capillarity and humidity-induced pad softening increases the pull-off force and the work of adhesion by two orders of magnitude. This increase and the independence of pull-off force on the applied load are caused by the capillarity-supported formation of solid–solid contact between pad and the surface. Solid–solid contact dominates adhesion at high humidity and capillarity at low humidity. At low humidity, the work of adhesion strongly depends on the amount of liquid deposited on the surface and, therefore, on contact duration. These results may pave the way for the design of insect-inspired adhesive pads.
机译:许多昆虫通过结合接触分裂(通过纤维状接触元素形成接触)和湿粘附(通过昆虫脚上的毛孔供应液体分泌物)可逆地粘附在表面上。在这里,我们制造了昆虫灵感的纤维状垫,用于湿式粘附,其中包含连续的孔系统,通过该孔系统将液体供应到接触界面。毛细作用和湿度引起的垫软化的协同相互作用将拉离力和附着功提高了两个数量级。这种增加和拉力在施加的载荷上的独立性是由垫层和表面之间的毛细作用支持的固-固接触形成的。固-固接触支配着高湿度下的粘附力和低湿度下的毛细作用。在低湿度下,粘附力很大程度上取决于沉积在表面上的液体量,并因此取决于接触持续时间。这些结果可能为昆虫启发的粘合垫的设计铺平道路。

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