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Adhesion analysis of multi-level hierarchical attachment system contacting with a rough surface

机译:与粗糙表面接触的多层次分层附着系统的附着力分析

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Several creatures, including insects, spiders and lizards, have a unique ability to cling to ceilings and walls utilizing dry adhesion. Geckos in particular have developed the most complex adhesion structures capable of smart adhesion, i.e., the ability to cling to and detach from different smooth and rough surfaces and detach at will. Their foot pads are covered by a large number of small hairs (setae) that contain many branches per seta with a lower level of spatulae. This hierarchical structure gives the gecko the adaptability to create a large real area of contact with rough surfaces van der Waals attraction between the large numbers of spatulae in contact with the rough surface is responsible for high adhesion. In order to investigate the effect of the gecko's hierarchical structure, a three-level hierarchical model for a gecko lamella consisting of setae, branches and spatulae has been developed. We consider one-, two- and three-level hierarchically structured spring models for simulation of a seta contacting with random rough surfaces and demonstrate the effect of the multi-level hierarchical structure on the efficiency of seta attachment. Rough surfaces with various roughness parameters which cover a common range of most natural and artificial rough surfaces at the scale of a gecko's pad were generated. It is shown that a multi-level hierarchical structure produces adhesion enhancement, and this enhancement increases with an increase in the applied load and a decrease in the stiffness of springs. A significant adhesion enhancement occurs when the maximum spring deformation is greater than 2-3-times the root mean square amplitude of surface roughness.
机译:包括昆虫,蜘蛛和蜥蜴在内的几种生物具有利用干附着力粘附在天花板和墙壁上的独特能力。特别是壁虎已经开发出最复杂的能够智能粘附的粘附结构,即能够粘附在不同的光滑和粗糙表面上并从其上脱落并随意剥离的能力。他们的脚垫上覆盖着大量的小毛(刚毛),每个毛发中有很多分支,而刮刀的水平较低。这种分层结构使壁虎具有适应性,可以在与粗糙表面的接触中创建较大的实际接触区域。与粗糙表面接触的大量铲刀之间的范德华力吸引力高。为了研究壁虎分层结构的影响,已开发了由刚毛,树枝和小铲组成的壁虎薄片的三级分层模型。我们考虑一,二和三级分层结构的弹簧模型,用于模拟与随机粗糙表面接触的刚毛,并证明多级分层结构对刚毛附着效率的影响。产生了具有各种粗糙度参数的粗糙表面,该表面覆盖了壁虎垫大小的大多数自然和人工粗糙表面的共同范围。结果表明,多层结构可提高附着力,并且随着施加载荷的增加和弹簧刚度的降低,这种附着力也会增加。当最大弹簧变形大于表面粗糙度的均方根振幅的2-3倍时,粘合力会显着提高。

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