论文标题

与粘合剂球体分层:曲率引起的露水与屈曲

Delamination from an adhesive sphere: Curvature-induced dewetting versus buckling

论文作者

Box, Finn, Domino, Lucie, Corvo, Tiago Outerelo, Adda-Bedia, Mokhtar, Démery, Vincent, Vella, Dominic, Davidovitch, Benny

论文摘要

每天的经验证实了粘合剂膜从刚性底物的球体区域脱落的趋势 - 将粘稠的绷带放在肘或膝盖上时,又有什么沮丧的是,在涂料和绘画行业中是更严重的事情。无论它们对弯曲的抵抗力如何,这种现象的关键驱动力是高斯的\ textit {theorema egregium},这意味着自然平坦的床单无法符合双层弯曲的表面,而不会发展其幅度迅速与弯曲区域生长的菌株。以前的尝试表征了曲率引起的分层的发作及其产生的复杂模式,假定是一种类似脱水的机制,在这种机制中,两种材料通过界面能量形成接触的倾向是通过弹性能量惩罚来改变的。我们表明,这种方法可能表征了适度弯曲的粘合剂片,但质量地描述了曲率诱导的超薄膜的分层,其力学受其机械的倾向,其倾向在微小的压缩水平下扣紧。结合了机械和几何考虑因素,我们引入了曲率诱导的分层的最小模型,该模型解释了两个基本的屈曲基序,浅层“ rucks”和局部的“折叠”。我们预测了曲率诱导的分层和新兴模式的各种特征的非平凡缩放规则,这与实验观测很好地比较。除了控制超薄粘合剂在尖端技术(例如可拉伸电子设备)中使用超薄粘合剂外,我们的分析是量化多尺度形态复杂性的重要一步,在对高度可弯曲的固体物体施加几何和机械约束时,出现了多尺度形态复杂性。

Everyday experience confirms the tendency of adhesive films to detach from spheroidal regions of rigid substrates -- what is a petty frustration when placing a sticky bandage onto an elbow or knee is a more serious matter in the coating and painting industries. Irrespective of their resistance to bending, a key driver of such phenomena is Gauss' \textit{Theorema Egregium}, which implies that naturally flat sheets cannot conform to doubly-curved surfaces without developing a strain whose magnitude grows sharply with the curved area. Previous attempts to characterize the onset of curvature-induced delamination, and the complex patterns it gives rise to, assumed a dewetting-like mechanism in which the propensity of two materials to form contact through interfacial energy is modified by an elastic energy penalty. We show that this approach may characterize moderately bendable adhesive sheets, but fails qualitatively to describe the curvature-induced delamination of ultrathin films, whose mechanics is governed by their propensity to buckle under minute levels of compression. Combining mechanical and geometrical considerations, we introduce a minimal model for curvature-induced delamination that accounts for two elementary buckling motifs, shallow "rucks" and localized "folds". We predict nontrivial scaling rules for the onset of curvature-induced delamination and various features of the emerging patterns, which compare well with experimental observations. Beyond gaining control on the use of ultrathin adhesives in cutting edge technologies such as stretchable electronics, our analysis is a significant step towards quantifying the multiscale morphological complexity that emerges upon imposing geometrical and mechanical constraints on highly bendable solid objects.

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