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屈服应力流体液滴在高滑润表面上的滑动和滚动。

Sliding and rolling of yield stress fluid droplets on highly slippery lubricated surfaces.

机构信息

Dipartimento di Fisica e Astronomia "G. Galilei", Università di Padova, via Marzolo 8, 35131 Padova, Italy.

Dipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università di Milano, via F.lli Cervi 93, 20054 Segrate, Italy.

出版信息

J Colloid Interface Sci. 2023 Aug 15;644:487-495. doi: 10.1016/j.jcis.2023.04.075. Epub 2023 Apr 22.

Abstract

HYPOTHESIS

Droplets of yield stress fluids (YSFs), i.e. fluids that can flow only if they are subjected to a stress above a critical value and otherwise deform like solids, hardly move on solid surfaces due to their high viscosity. The use of highly slippery lubricated surfaces can shed light on the mobility of YSF droplets, which include everyday soft materials, such as toothpaste or mayonnaise, and biological fluids, such as mucus.

EXPERIMENTS

The spreading and mobility of droplets of aqueous solutions of swollen Carbopol microgels were studied on lubricant infused surfaces. These solutions represent a model system of YSFs. Dynamical phase diagrams were established by varying the concentration of the solutions and the inclination angle of the surfaces.

FINDINGS

Carbopol droplets deposited on lubricated surfaces could move even at low inclination angles. The droplets were found to slide because of the slip of the flowing oil that covered the solid substrate. However, as the descending speed increased, the droplets rolled down. Rolling was favored at high inclinations and low concentrations. A simple criterion based on the ratio between the yield stress of the Carbopol suspensions and the gravitational stress acting on the Carbopol droplets was found to nicely identify the transition between the two regimes.

摘要

假设

屈服应变速率流体(YSF)的液滴,即只有在受到超过临界值的应力时才能流动,否则像固体一样变形的流体,由于其高粘度,很难在固体表面上移动。使用高度光滑的润滑表面可以揭示 YSF 液滴的流动性,这些液滴包括日常的软材料,如牙膏或蛋黄酱,以及生物流体,如粘液。

实验

在注入润滑剂的表面上研究了溶胀 Carbopol 微凝胶水溶液液滴的铺展和迁移。这些溶液代表了 YSF 的模型体系。通过改变溶液的浓度和表面的倾斜角度,建立了动力学相图。

发现

即使在低倾斜角度下,沉积在润滑表面上的 Carbopol 液滴也可以移动。发现液滴由于覆盖固体基底的流动油的滑动而滑动。然而,随着下降速度的增加,液滴开始滚动。在高倾斜度和低浓度下,滚动更有利。基于 Carbopol 悬浮液的屈服应力与作用在 Carbopol 液滴上的重力应力之间的比值的简单准则,很好地识别了这两种状态之间的转变。

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