首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Role of Tilted Adhesion Fibrils (Setae) in the Adhesion and Locomotion of Gecko-like Systems
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Role of Tilted Adhesion Fibrils (Setae) in the Adhesion and Locomotion of Gecko-like Systems

机译:倾斜的粘附原纤维(Setae)在壁虎样系统的粘附和运动中的作用

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摘要

Geckos are super climbers: they can readily and rapidly stick to almost any surface, whether hydrophilic or hydrophobic, rough or smooth, in dry or wet conditions, and detach with equal rapidity within tens of milliseconds. In this paper, we discuss the rapid switching between the strong adhesion/friction (attached) state and zero adhesion/friction (detached) state, and present a finite element analysis of gecko setae in terms of their adhesion and friction forces. The analysis shows why the asymmetric, naturally curved setae with a directional tilt play a crucial role in the gecko's articulation mechanism, consistent with recent experimental studies of gecko setal arrays. We derive guidelines for designing synthetic versions of gecko adhesive pads, and propose a design for a "gecko-inspired" adhesive surface consisting of arrays of curved, asymmetric, and directionally oriented microfibrils, attached to a semirigid backing, and suggest a method for its actuation.
机译:壁虎是超级登山者:他们可以在干燥或潮湿的条件下迅速,迅速地粘附在几乎任何表面上,无论是亲水性还是疏水性,粗糙或光滑的表面,并在数十毫秒内以相等的速度脱离。在本文中,我们讨论了强附着力/摩擦力(附着)状态和零附着力/摩擦力(脱离)状态之间的快速转换,并针对壁虎科的附着力和摩擦力进行了有限元分析。分析表明,为什么具有方向性倾斜的不对称自然弯曲的刚毛在壁虎的关节运动机制中起着至关重要的作用,这与最近对壁虎固定阵列的实验研究一致。我们得出了设计壁虎胶垫合成版的指导原则,并提出了一种“壁虎式”胶粘剂表面的设计方案,该表面由弯曲,不对称和定向的微纤维阵列组成,并附着在半刚性背衬上,并提出了一种制造方法。致动。

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