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Roles of discontinuities in bio-inspired adhesive pads

机译:不连续在生物启发的胶垫中的作用

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摘要

Morphological intricacies of the biological attachment pads generate considerable interest owing to their remarkable ability to control adhesion to various surfaces. Motivated by the adhesive microstructures of insects, we examine the behaviour of adhesion and crack propagation in patterned adhesive films. These films are made of silicone elastomers that were patterned with lateral, longitudinal or crosswise incisions from which a thin silanized glass plate was removed in a displacement-controlled peel experiment. The behaviours of crack propagation on these patterned adhesive films are controlled by simple incision patterns, their depths and spacing. With the crosswise incisions, significant enhancement (×10–20) of fracture energy has been achieved. These findings point towards an important mechanism by which of biological organisms might enhance adhesion, and provide a simple design principle for manipulating the interfacial fracture in a variety of artificial attachment devices.
机译:生物附着垫的形态复杂性引起人们极大的兴趣,这是由于它们具有控制对各种表面的粘附力的显着能力。受昆虫的胶粘剂微观结构的影响,我们研究了图案化胶粘剂膜中胶粘剂的行为和裂纹扩展。这些薄膜由硅酮弹性体制成,该硅酮弹性体具有横向,纵向或横向切口的图案,在位移控制剥离实验中,该薄片已从薄的硅烷化玻璃板上取下。通过简单的切口图案,其深度和间距来控制在这些图案化的粘合剂膜上的裂纹扩展行为。通过横向切口,已经实现了断裂能的显着增强(×10–20)。这些发现指出了一种重要的机制,生物可以通过这种机制来增强粘附力,并提供一种简单的设计原理来处理各种人工附着装置中的界面骨折。

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