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Biomimetic mushroom-shaped fibrillar adhesive microstructure

机译:仿生蘑菇形原纤维胶的微观结构

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摘要

To improve the adhesive properties of artificial fibrillar contact structures, the attachment systems of beetles from the family Chrysomelidae were chosen to serve as a model. Biomimetic mushroom-shaped fibrillar adhesive microstructure inspired by these systems was characterized using a variety of measurement techniques and compared with a control flat surface made of the same material. Results revealed that pull-off force and peel strength of the structured specimens are more than twice those of the flat specimens. In contrast to the control system, the structured one is found to be very tolerant to contamination and able to recover its adhesive properties after being washed in a soap solution. Based on the combination of several geometrical principles found in biological attachment devices, the presented microstructure exhibits a considerable step towards the development of an industrial dry adhesive.
机译:为了提高人工纤维状接触结构的粘合性能,选择了金眼科甲虫的附着系统作为模型。受这些系统启发的仿生蘑菇状原纤维状粘合剂微结构的特征在于使用了多种测量技术,并与由相同材料制成的控制平面进行了比较。结果表明,结构化试样的拉力和剥离强度是扁平试样的两倍以上。与控制系统相比,结构控制的系统非常耐污染,并且在肥皂溶液中洗涤后能够​​恢复其粘合性能。基于在生物附着装置中发现的几种几何原理的结合,提出的微观结构向工业干胶的发展迈出了重要的一步。

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