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具有形状可控偏心帽的仿生纤维粘合剂,用于可切换和定向粘附。

Bioinspired fibrillar adhesives with shape-controlled off-center caps for switchable and directional adhesion.

作者信息

Geikowsky E, Aksak B

机构信息

Mechanical Engineering, Texas Tech University, Lubbock, TX 79409-1021, United States of America. Departamento de Ingeniería Metalúrgica y de Materiales, Universidad Técnica Federico Santa María, Valparaíso, Chile.

出版信息

Bioinspir Biomim. 2020 Jul 22;15(5):056007. doi: 10.1088/1748-3190/ab98dd.

Abstract

Most natural fibrillar adhesive structures feature spatula-shaped caps as a common adhesive element. The spatula-shaped tips endow adhesive fiber arrays with on demand adhesion, allowing them to maximize adhesion in a given direction and facilitate effortless detachment. Replication of off-center spatula ends synthetically, a key contributor to directional adhesion, remains a fabrication challenge. In this work, a method to feature synthetic microfiber adhesives with off-center caps is proposed. This new method decouples the shape and placement dependency between the cap and the stem, providing endless possibilities in positioning of the tip with respect to the stem and the two-dimensional shape and the material of both the cap and the stem. Experiments of directional adhesion were carried out to demonstrate switchable adhesion relevant for pick & place type applications, and the ability to generate high friction and easy removal. Fibers with off-center caps were shown to promote easy detachment after strong adhesion in both straight and bent stalks. Straight fibers with off-center caps showed 3-to-5-fold reduction in adhesion when pulled diagonally instead of vertically from the adhering surface. Bent fibers on the other hand provided up to 3 times more maximum shear than adhesion, when fibers are dragged laterally against the cap overhang. These results show the versatility and the potential of the proposed fabrication method in designing application specific directional and switchable adhesives.

摘要

大多数天然纤维状粘附结构都具有铲形帽作为常见的粘附元件。铲形尖端赋予粘附纤维阵列按需粘附的能力,使它们能够在给定方向上实现最大粘附力,并便于轻松分离。合成偏心铲形末端(方向粘附的关键因素)仍然是一个制造挑战。在这项工作中,提出了一种使合成微纤维粘合剂具有偏心帽的方法。这种新方法消除了帽与杆之间形状和位置的依赖性,为尖端相对于杆的定位以及帽和杆的二维形状及材料提供了无限可能性。进行了方向粘附实验,以证明与拾取和放置类型应用相关的可切换粘附性,以及产生高摩擦力和易于去除的能力。结果表明,带有偏心帽的纤维在直茎和弯茎中强力粘附后都易于分离。当从粘附表面对角拉动而不是垂直拉动时,带有偏心帽的直纤维的粘附力降低了3至5倍。另一方面,当纤维靠着帽的悬垂侧向拖动时,弯曲纤维提供的最大剪切力比粘附力多两倍。这些结果表明了所提出的制造方法在设计特定应用的方向和可切换粘合剂方面的多功能性和潜力。

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