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长矩形膜与液滴之间的弹性毛细相互作用。

Elastocapillary interaction between a long rectangular membrane and a liquid drop.

作者信息

Samy R A, Satpathi N S, Sen A K

机构信息

Fluid Systems Lab, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai, India.

出版信息

Soft Matter. 2021 Dec 22;18(1):228-235. doi: 10.1039/d1sm01420j.

Abstract

We report elastocapillary interaction between a long rectangular membrane fixed along its central axis and a liquid drop dispensed at one of its ends. The introduction of the drop results in the elastocapillary-driven wrapping of the membrane along its width and a concomitant flow in the resulting conduit along its length. Depending upon the drop size () and capillary length scale (), we identified general criteria for achieving complete wrapping of the membrane in the dry state from energy considerations. For small droplets satisfying ≲ , we find that the critical membrane length () required for complete wrapping is proportional to the elastocapillary length scale (). In the case of large droplets with > , the wrapping behavior depends on the ratio of membrane width to elastocapillary length scale (/) and the ratio of capillary length scale to the elastocapillary length scale (/). Our study suggests that the critical membrane width for complete wrapping is smaller in the wet state compared to that in the dry state, which can be attributed to the existence of a transmembrane pressure in the wet state. The effect of membrane thickness and width and drop volume on the length and cross-section of the wrapped conduit and attached width of the wrapped membrane is studied. For small droplets, the resulting elastocapillary flow exhibits an inertial regime at small times, followed by a Washburn regime at intermediate times, and finally an inertial regime, and for large droplets, only an inertial regime is observed throughout.

摘要

我们报告了沿其中心轴固定的长矩形膜与在其一端 dispensed 的液滴之间的弹性毛细相互作用。液滴的引入导致膜沿其宽度方向由弹性毛细作用驱动的包裹以及在所得管道中沿其长度方向的伴随流动。根据液滴大小()和毛细长度尺度(),我们从能量角度确定了在干燥状态下实现膜完全包裹的一般标准。对于满足 ≲ 的小液滴,我们发现完全包裹所需的临界膜长度()与弹性毛细长度尺度()成正比。对于 > 的大液滴,包裹行为取决于膜宽度与弹性毛细长度尺度的比值(/)以及毛细长度尺度与弹性毛细长度尺度的比值(/)。我们的研究表明,与干燥状态相比,湿状态下完全包裹所需的临界膜宽度更小,这可归因于湿状态下跨膜压力的存在。研究了膜厚度、宽度和液滴体积对包裹管道的长度和横截面以及包裹膜的附着宽度的影响。对于小液滴,产生的弹性毛细流动在短时间内呈现惯性状态,随后在中间时间呈现沃什伯恩状态,最后又回到惯性状态,而对于大液滴,在整个过程中仅观察到惯性状态。 (注:原文中“dispensed at one of its ends”的“dispensed”翻译可能不准确,因不清楚具体情境,暂译为“放置”之类,可根据准确意思调整;另外文中一些括号里的内容原文缺失具体含义,译文保留原样)

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