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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Tree frog adhesion biomimetics: opportunities for the development of new, smart adhesives that adhere under wet conditions
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Tree frog adhesion biomimetics: opportunities for the development of new, smart adhesives that adhere under wet conditions

机译:树蛙粘附生物体:开发新的智能粘合剂的机会,粘附在潮湿条件下

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摘要

Enlarged adhesive toe pads on the tip of each digit allow tree frogs to climb smooth vertical and overhanging surfaces, and are effective in generating reversible adhesion under both dry and wet conditions. In this review, we discuss the complexities of the structure of tree frog toe pads in relation to their function and review their biomimetic potential. Of particular importance are the (largely) hexagonal epithelial cells surrounded by deep channels that cover the surface of each toe pad and the array of nanopillars on their surface. Fluid secreted by the pads covers the surface of each pad, so the pads adhere by wet adhesion, involving both capillarity and viscosity-dependent forces. The fabrication and testing of toe pad mimics are challenging, but valuable both for testing hypotheses concerning tree frog toe pad function and for developing toe pad mimics. Initial mimics involved the fabrication of hexagonal pillars mimicking the toe pad epithelial structure. More recent ones additionally replicate the nanostructures on their surface. Finally we describe some of the biomimetic applications that have been developed from toe pad mimics, which include both bioinspired adhesives and friction-generating devices.
机译:每个数字尖端的扩大粘合剂脚趾垫允许树蛙爬上光滑的垂直和悬垂表面,并且有效地在干燥和湿润条件下产生可逆粘附。在本次审查中,我们讨论了树蛙脚趾垫结构的复杂性与其功能相关并审查其仿生潜力。特别重要的是(很大程度上)由深通道包围的(很大程度上)的六边形上皮细胞,其覆盖每个脚趾垫的表面和其表面上的纳米粒子阵列。由垫分泌的流体覆盖每个垫的表面,因此焊盘通过湿粘附粘附,涉及毛细血管性和粘度依赖性的力。脚趾垫模仿的制造和测试是具有挑战性的,但是对于测试树蛙脚趾焊盘功能的假设和开发脚趾垫模拟的假设有价值。初始模拟涉及模仿脚趾上皮结构的六角形柱的制造。最近的另外的另外复制它们的表面上的纳米结构。最后,我们描述了从脚趾垫模拟产生的一些仿生应用,其包括生物透明粘合剂和摩擦产生装置。

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