Elder Theresa, Croll Andrew B
Materials and Nanotechnology, North Dakota State University, Fargo, USA.
Department of Physics, North Dakota State University, Fargo, USA.
Soft Matter. 2022 Oct 19;18(40):7866-7876. doi: 10.1039/d2sm00858k.
If an adhesive is meant to be temporary, roughness often poses a challenge for design. An adhesive could be made soft so that it can deform and increase surface contact but a softer material will in general hold a smaller load. Bioinspired adhesives, made with numerous microscale posts, show promise as roughness tolerant adhesives but are complicated to fabricate. In this work, we show how thin polymer sheets, when crumpled into a roughly spherical shape, form a very simple and roughness tolerant adhesive system. We use micro and macro-scale experiments to measure adhesion forces between various substrates and crumpled polydimethylsiloxane sheets. We find the force-displacement curves resemble probe-tack experiments of traditional pressure sensitive adhesives and that moderate tensile forces are required to initiate interfacial failure. Notably, we see that sticky crumples often perform better on long wavelength roughness than they do on smooth substrates. In order to improve the peak pull-off forces, we create a sticky crumple from a thin sheet of a glassy polymer, polycarbonate, coated with an adhesive layer. This elasto-plastic sticky crumple achieves high pull-off forces even on the rough surface of a landscaping brick.
如果一种粘合剂是临时性的,那么粗糙度通常会给设计带来挑战。可以将粘合剂做得很软,使其能够变形并增加表面接触,但一般来说,较软的材料承载的负荷会更小。由众多微尺度柱体构成的仿生粘合剂有望成为耐粗糙度的粘合剂,但制造起来很复杂。在这项工作中,我们展示了薄聚合物片材在被揉皱成大致球形时,如何形成一个非常简单且耐粗糙度的粘合剂系统。我们通过微观和宏观尺度的实验来测量各种基材与揉皱的聚二甲基硅氧烷片材之间的粘附力。我们发现力 - 位移曲线类似于传统压敏粘合剂的探针粘性实验,并且需要适度的拉力来引发界面失效。值得注意的是,我们发现粘性皱折在长波长粗糙度表面上的表现通常比在光滑基材上更好。为了提高峰值剥离力,我们用涂有粘合剂层的玻璃态聚合物聚碳酸酯薄片制作了一个粘性皱折。这种弹塑性粘性皱折即使在景观砖的粗糙表面上也能实现高剥离力。