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Understanding the influence of silicone elastomer properties on wedge-shaped microstructured dry adhesives loaded in shear

机译:了解有机硅弹性体性能对剪切加载的楔形微结构干胶的影响

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摘要

Anisotropic, gecko-inspired, microstructured adhesives are one of the most promising solutions for many applications in robotics and biomedical applications that require controllable adhesives to grip flat surfaces. In such adhesives, normal adhesion is negligible when loaded solely in the normal direction, but becomes available when the adhesive is loaded in shear first. However, much remains to be learned regarding the friction and failure mechanisms of microstructures loaded in shear. In response, we analysed the load–displacement profiles of wedge-shaped microstructured adhesives comprised of nine different silicone elastomers and their mixtures loaded in shear. The results show that the friction profile depends on at least three factors related to material properties: interfacial adhesion strength in the normal direction (work of separation), elastic modulus and the sample's imperfections (e.g. contamination, misalignment and moulding errors). Moreover, the work of separation influences the maximum friction load such that for materials with the same elastic modulus, the strongest interfacial adhesion yields the lowest friction force. To explain this, we suggest that strongly adhering materials will lead to a macroscopic frictional sliding of the array rather than previously reported stick-slip behaviour.
机译:各向异性,壁虎启发的微结构胶粘剂是机器人和生物医学应用中许多应用中最有希望的解决方案之一,这些应用需要可控的胶粘剂来夹持平坦表面。在此类粘合剂中,仅沿法线方向加载时,法向粘合力可忽略不计,但当首先以剪切方式加载粘合剂时,法向粘合力变为可用。但是,关于在剪切中加载的微结构的摩擦和破坏机理,还有很多东西要学习。作为回应,我们分析了由九种不同的有机硅弹性体组成的楔形微结构胶粘剂的载荷-位移曲线,以及它们在剪切下的混合物。结果表明,摩擦曲线至少取决于与材料性能有关的三个因素:法向方向上的界面粘合强度(分离功),弹性模量和样品的缺陷(例如污染,错位和成型误差)。此外,分离功影响最大的摩擦负荷,因此对于具有相同弹性模量的材料,最强的界面粘合力产生最低的摩擦力。为了解释这一点,我们建议强力粘附的材料将导致阵列的宏观摩擦滑动,而不是先前报道的粘滑行为。

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