The effects of soft and rough substrates on suction-based adhesion.

J. Huie, A. Summers
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引用次数: 6

Abstract

The Northern clingfish (Gobiesox maeandricus) has a suction-based adhesive disc that can stick to incredibly rough surfaces, a challenge for stiff commercial suction cups. Both clingfish discs and bioinspired suction cups have stiff cores but flexible edges that can deform to overcome surface irregularities. Compliant surfaces are common in nature and technical settings, but performance data for fish and commercial cups is gathered from stiff surfaces. We quantified the interaction between substrate compliance, surface roughness, and suction performance for the Northern clingfish, commercial suction cups, and three biomimetic suction cups with disc rims of varying compliance. We found that all cups stick better on stiffer substrates and worse on more compliant ones, as indicated by peak stress values. On compliant substrates, surface roughness had little effect on adhesion, even for commercial cups that normally fail on hard, rough surfaces. We propose that suction performance on compliant substrates can be explained in part by effective elastic modulus, the combined elastic modulus from a cup-substrate interaction. Of all the tested cups, the biomimetic cups performed the best on compliant surfaces, highlighting their potential to be used in medical and marine geotechnical fields. Lastly, we discuss the overmolding technique used to generate the bioinspired cups and how it is an important tool for studying biology.
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软基材和粗糙基材对吸附性的影响。
北方粘鱼(Gobiesox maandricus)有一个基于吸力的粘盘,可以粘在非常粗糙的表面上,这是商用硬吸盘的一个挑战。粘鱼盘和仿生吸盘都有坚硬的核心,但边缘灵活,可以变形以克服表面的不规则性。柔韧表面在自然界和技术环境中很常见,但鱼和商业杯子的性能数据是从坚硬表面收集的。我们量化了基材顺应性、表面粗糙度和北方粘鱼、商业吸盘和三个具有不同顺应性圆盘边缘的仿生吸盘的吸盘性能之间的相互作用。我们发现所有的杯子粘在更硬的基材上更好,在更柔顺的基材上更差,如峰值应力值所示。在柔顺的基材上,表面粗糙度对附着力几乎没有影响,即使是在坚硬粗糙的表面上通常失效的商业杯。我们提出,柔性基底上的吸力性能可以部分地用有效弹性模量来解释,有效弹性模量是由杯-基底相互作用产生的组合弹性模量。在所有测试的杯子中,仿生杯子在柔顺表面上表现最好,突出了它们在医疗和海洋岩土领域的应用潜力。最后,我们讨论了用于生成仿生杯的覆盖成型技术,以及它如何成为研究生物学的重要工具。
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