Isla Paula Yagüe, Kroner Elmar
INM - Leibniz Institute for New Materials Campus D2 2, 66123, Saarbrücken, Germany E-mail:
Adv Funct Mater. 2015 Apr 22;25(16):2444-2450. doi: 10.1002/adfm.201500241. Epub 2015 Mar 16.
A novel switchable adhesive, inspired by the gecko's fibrillar dry attachment system, is introduced. It consists of a patterned surface with an array of mushroom-shaped pillars having two distinct heights. The different pillar heights allow control of the pull-off force in two steps by application of a low and a high preload. For low preload, only the long pillars form contact, resulting in a low pull-off force. At higher preload, all pillars form contact, resulting in high pull-off force. Even further loading leads to buckling induced detachment of the pillars which corresponds to extremely low pull-off force. To achieve the respective samples a new fabrication method called double inking is developed, to achieve multiple-height pillar structures. The adhesion performance of the two-step switchable adhesive is analysed at varying preload and for different pillar aspect ratios and height relations. Finally, the deformation behavior of the samples is investigated by in situ monitoring.
一种受壁虎纤维状干附着系统启发的新型可切换粘合剂被引入。它由一个带有一系列蘑菇形柱体的图案化表面组成,这些柱体有两种不同的高度。不同的柱体高度允许通过施加低预载和高预载分两步控制拉脱力。对于低预载,只有长柱体形成接触,导致低拉脱力。在较高预载下,所有柱体都形成接触,导致高拉脱力。进一步加载会导致柱体因屈曲而分离,这对应于极低的拉脱力。为了制备相应的样品,开发了一种称为双墨印刷的新制造方法,以实现多高度柱体结构。在不同预载以及不同柱体纵横比和高度关系下分析了两步可切换粘合剂的粘附性能。最后,通过原位监测研究了样品的变形行为。