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一种微制造的楔形粘附阵列,具有类似壁虎的动态粘附、方向性和长寿命。

A microfabricated wedge-shaped adhesive array displaying gecko-like dynamic adhesion, directionality and long lifetime.

机构信息

Department of Mechanical Engineering, Stanford University, Escondido Mall, Stanford, CA 94305, USA.

出版信息

J R Soc Interface. 2009 Dec 6;6(41):1223-32. doi: 10.1098/rsif.2009.0048. Epub 2009 Mar 18.

Abstract

Gecko adhesion has become a paradigmatic example of bio-inspired engineering, yet among the many gecko-like synthetic adhesives (GSAs), truly gecko-like performance remains elusive. Many GSAs have previously demonstrated one or two features of the gecko adhesive. We present a new wedge-shaped GSA that exhibits several gecko-like properties simultaneously: directional features; zero force at detachment; high ratio of detachment force to preload force; non-adhesive default state; and the ability to maintain performance while sliding, even after thousands of cycles. Individual wedges independently detach and reattach during sliding, resulting in high levels of shear and normal adhesion during drag. This behaviour provides a non-catastrophic failure mechanism that is desirable for applications such as climbing robots where sudden contact failure would result in serious falls. The effects of scaling patch sizes up to tens of square centimetres are also presented and discussed. Patches of 1 cm(2) had an adhesive pressure of 5.1 kPa while simultaneously supporting 17.0 kPa of shear. After 30 000 attachment/detachment cycles, a patch retained 67 per cent of its initial adhesion and 76 per cent of its initial shear without cleaning. Square-based wedges of 20 mum and 50 mum are manufactured in a moulding process where moulds are fabricated using a dual-side, dual-angle lithography process on quartz wafers with SU-8 photoresist as the mould material and polydimethylsiloxane as the cast material.

摘要

壁虎的黏附能力已成为生物启发式工程的典范,但在众多类似壁虎的合成黏附剂(GSAs)中,真正类似壁虎的性能仍然难以实现。许多 GSAs 以前已经展示了壁虎黏附剂的一个或两个特征。我们提出了一种新的楔形 GSA,它同时表现出几个类似壁虎的特性:具有定向特征;脱离时无需施加力;脱离力与预加载力的比值高;具有非粘性的默认状态;即使在滑动数千次循环后,仍能保持性能。在滑动过程中,各个楔形独立脱离和重新附着,导致在拖动过程中产生高剪切和正常粘附力。这种行为提供了一种非灾难性的失效机制,对于攀爬机器人等应用非常理想,因为突然接触失效会导致严重摔倒。还介绍和讨论了将贴片尺寸放大到数十平方厘米的效果。1cm² 的贴片具有 5.1kPa 的黏附压力,同时能够承受 17.0kPa 的剪切力。经过 30000 次附着/脱离循环后,一个贴片在不清洗的情况下保留了初始黏附力的 67%和初始剪切力的 76%。20µm 和 50µm 的基于正方形的楔形件是通过模塑工艺制造的,其中模具是在石英晶片上使用双面、双角度光刻工艺制造的,SU-8 光致抗蚀剂用作模具材料,聚二甲基硅氧烷用作浇铸材料。

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