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Design of gecko-inspired fibrillar surfaces with strong attachment and easy-removal properties: a numerical analysis of peel-zone

机译:具有牢固附着力和易于去除特性的壁虎启发性原纤维表面设计:剥离区的数值分析

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摘要

Despite successful fabrication of gecko-inspired fibrillar surfaces with strong adhesion forces, how to achieve an easy-removal property becomes a major concern that may restrict the wide applications of these bio-inspired surfaces. Research on how geckos detach rapidly has inspired the design of novel adhesive surfaces with strong and reversible adhesion capabilities, which relies on further fundamental understanding of the peeling mechanisms. Recent studies showed that the peel-zone plays an important role in the peeling off of adhesive tapes or fibrillar surfaces. In this study, a numerical method was developed to evaluate peel-zone deformation and the resulting mechanical behaviour due to the deformations of fibrillar surfaces detaching from a smooth rigid substrate. The effect of the geometrical parameters of pillars and the stiffness of backing layer on the peel-zone and peel strength, and the strong attachment and easy-removal properties have been analysed to establish a design map for bio-inspired fibrillar surfaces, which shows that the optimized strong attachment and easy-removal properties can vary by over three orders of magnitude. The adhesion and peeling design map established provides new insights into the design and development of novel gecko-inspired fibrillar surfaces.
机译:尽管成功制造了具有强粘附力的壁虎启发性原纤维表面,但如何获得易于去除的性能却成为一个主要问题,可能会限制这些生物启发性表面的广泛应用。关于壁虎如何快速分离的研究启发了具有强力和可逆粘合能力的新型粘合表面的设计,这依赖于对剥离机理的进一步基本了解。最近的研究表明,剥离区在胶带或原纤维表面的剥离中起着重要作用。在这项研究中,开发了一种数值方法来评估剥离区变形以及由于从光滑的刚性基材上脱落的原纤维表面的变形而导致的机械性能。分析了支柱的几何参数和衬里层的刚度对剥离区和剥离强度的影响,以及牢固的附着力和易于去除的特性,从而建立了生物启发性原纤维表面的设计图,表明:优化的牢固附着力和易于去除的性能可以相差三个数量级以上。建立的附着力和剥离设计图可为新型壁虎启发的原纤维表面的设计和开发提供新见解。

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