论文标题
平面胶体膜的破裂动力学
Rupture dynamics of flat colloidal films
论文作者
论文摘要
在这里,我们报告了有关在大量体积分数中平面胶体膜破裂的实验结果,0.00 $ \ le ϕ \ le $ 0.47。使用恒定的流体体积形成膜,用针破裂,并使用高速摄像头记录。我们表明,胶体膜的破裂方式与牛顿流体相似,甚至在剪切变薄的状态中也是如此。这些结果与牛顿膜破裂的众所周知的机制一致,牛顿膜破裂的机理在其中破裂的边缘向外滚动收集更多的流体,因此膜破裂是无剪切的过程。但是,在受控湿度条件下自发破裂的情况下,相同的密集胶体膜显示出异国情调的不稳定性,让人联想到膜表面上的皱纹织物。这些不稳定性在手动破裂的电影中不存在。我们假设这些不稳定性在膜厚度变得足够薄到足以与胶体粒径竞争时发生,这是由于自发破裂前的膜引流。因此,尽管非牛顿流的特性不会影响足够厚的膜的膜破裂动力学,但微结构的效果在较薄的薄膜中会产生巨大的后果。
Here, we report experimental results on the rupture of flat colloidal films over a large range of volume fractions, 0.00 $\le ϕ\le$ 0.47. The films are formed using a constant fluid volume, ruptured with a needle, and recorded using a high-speed camera. We show that colloidal films rupture in a manner quantitatively similar to Newtonian fluids, even well into the shear thinning regime. These results are consistent with the well-known mechanism of the rupture of Newtonian films, where the rupture rim rolls outward collecting more fluid and thus film rupture is a shear-free process. However, in the case of spontaneous rupture under controlled humidity conditions, the same dense colloidal films show exotic instabilities reminiscent of a wrinkling fabric on the film surface. These instabilities were absent in manually ruptured films. We hypothesize that these instabilities occur when the film thickness becomes thin enough to compete with the colloidal particle size, due to film drainage before spontaneous rupture. Thus, although non-Newtonian flow properties do not influence film rupture dynamics for thick enough films, the effect of microstructure has dramatic consequences in thinner films.