Bauer Christina T, Kroner Elmar, Fleck Norman A, Arzt Eduard
INM-Leibniz Institute for New Materials, Campus D2 2, D-66123 Saarbrücken, Germany. Saarland University, Campus D2 2, D-66123 Saarbrücken, Germany.
Bioinspir Biomim. 2015 Oct 23;10(6):066002. doi: 10.1088/1748-3190/10/6/066002.
Nature uses hierarchical fibrillar structures to mediate temporary adhesion to arbitrary substrates. Such structures provide high compliance such that the flat fibril tips can be better positioned with respect to asperities of a wavy rough substrate. We investigated the buckling and adhesion of hierarchically structured adhesives in contact with flat smooth, flat rough and wavy rough substrates. A macroscopic model for the structural adhesive was fabricated by molding polydimethylsiloxane into pillars of diameter in the range of 0.3-4.8 mm, with up to three different hierarchy levels. Both flat-ended and mushroom-shaped hierarchical samples buckled at preloads one quarter that of the single level structures. We explain this behavior by a change in the buckling mode; buckling leads to a loss of contact and diminishes adhesion. Our results indicate that hierarchical structures can have a strong influence on the degree of adhesion on both flat and wavy substrates. Strategies are discussed that achieve highly compliant substrates which adhere to rough substrates.
自然界利用分层纤维结构来介导与任意底物的临时粘附。这种结构具有高柔韧性,使得扁平的纤维尖端能够更好地相对于波浪状粗糙底物的粗糙部分进行定位。我们研究了分层结构粘合剂与平坦光滑、平坦粗糙和波浪状粗糙底物接触时的屈曲和粘附情况。通过将聚二甲基硅氧烷模塑成直径在0.3 - 4.8毫米范围内的柱子,制造了一种用于结构粘合剂的宏观模型,该模型具有多达三个不同的层次级别。平头和蘑菇形分层样品在预载时发生屈曲,预载为单层结构的四分之一。我们通过屈曲模式的变化来解释这种行为;屈曲会导致接触丧失并降低粘附力。我们的结果表明,分层结构会对平坦和波浪状底物上的粘附程度产生强烈影响。文中讨论了实现能粘附在粗糙底物上的高柔韧性底物的策略。