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图案化表面的摩擦粘附及其对壁虎和仿生系统的影响。

Frictional adhesion of patterned surfaces and implications for gecko and biomimetic systems.

作者信息

Zeng Hongbo, Pesika Noshir, Tian Yu, Zhao Boxin, Chen Yunfei, Tirrell Matthew, Turner Kimberly L, Israelachvili Jacob N

机构信息

Department of Chemical Engineering, Materials Research Laboratory, University of California, Santa Barbara, California 93106, USA.

出版信息

Langmuir. 2009 Jul 7;25(13):7486-95. doi: 10.1021/la900877h.

Abstract

Geckos and smaller animals such as flies, beetles, and spiders have extraordinary climbing abilities: They can firmly attach and rapidly detach from almost any kind of surface. In the case of geckos, this ability is attributed to the surface topography of their attachment pads, which are covered with fine columnar structures (setae). Inspired by this biological system, various kinds of regularly structured or "patterned" surfaces are being fabricated for use as responsive adhesives or in robotic systems. In this study, we theoretically analyze the correlated adhesion and friction (frictional adhesion) of patterned surfaces against smooth (unstructured) surfaces by applying well-established theories of van der Waals forces, together with the classic Johnson-Kendall-Roberts (JKR) theory of contact (or adhesion) mechanics, to recent theories of adhesion-controlled friction. Our results, when considered with recent experiments, suggest criteria for simultaneously optimizing the adhesion and friction of patterned surfaces. We show that both the van der Waals adhesion and the friction forces of flexible, tilted, and optimally spaced setal stalks or (synthetic) pillars are high enough to support not only a large gecko on rough surfaces of ceilings (adhesion) and walls (friction) but also a human being if the foot or toe pads-effectively the area of the hands-have a total area estimated at approximately 230 cm2.

摘要

壁虎以及苍蝇、甲虫和蜘蛛等较小的动物具有非凡的攀爬能力:它们能够牢固地附着在几乎任何类型的表面上,并能迅速脱离。就壁虎而言,这种能力归因于其附着垫的表面形貌,附着垫上覆盖着细小的柱状结构(刚毛)。受这种生物系统的启发,人们正在制造各种规则结构或“图案化”的表面,用作响应式粘合剂或用于机器人系统。在本研究中,我们通过将成熟的范德华力理论与经典的约翰逊 - 肯德尔 - 罗伯茨(JKR)接触(或粘附)力学理论应用于粘附控制摩擦的最新理论,从理论上分析了图案化表面与光滑(无结构)表面之间的相关粘附力和摩擦力(摩擦粘附力)。我们的结果与最近的实验相结合,提出了同时优化图案化表面粘附力和摩擦力的标准。我们表明,柔性、倾斜且间距最佳的刚毛柄或(合成)柱体的范德华粘附力和摩擦力都足够高,不仅能够支撑一只大壁虎在天花板的粗糙表面上(粘附)以及在墙壁上(摩擦),而且如果脚底或脚趾垫——实际上是手的面积——总面积估计约为230平方厘米,还能支撑一个人。

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