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关于装甲气泡和液滴的崩溃压力。

On the collapse pressure of armored bubbles and drops.

作者信息

Pitois O, Buisson M, Chateau X

机构信息

Laboratoire Navier, UMR 8205 CNRS - école des Ponts ParisTech - IFSTTAR, Université Paris Est, cité Descartes, 2 allée Kepler, 77420, Champs-sur-Marne, France,

出版信息

Eur Phys J E Soft Matter. 2015 May;38(5):132. doi: 10.1140/epje/i2015-15048-9. Epub 2015 May 26.

Abstract

Drops and bubbles wrapped in dense monolayers of hydrophobic particles are known to sustain a significant decrease of their internal pressure. Through dedicated experiments we investigate the collapse behavior of such armored water drops as a function of the particle-to-drop size ratio in the range 0.02-0.2. We show that this parameter controls the behavior of the armor during the deflation: at small size ratios the drop shrinkage proceeds through the soft crumpling of the monolayer, at intermediate ratios the drop becomes faceted, and for the largest studied ratios the armor behaves like a granular arch. The results show that each of the three morphological regimes is characterized by an increasing magnitude of the collapse pressure. This increase is qualitatively modeled thanks to a mechanism involving out-of-plane deformations and particle disentanglement in the armor.

摘要

已知包裹在致密单层疏水颗粒中的液滴和气泡,其内部压力会显著降低。通过专门的实验,我们研究了这种有防护层的水滴在0.02 - 0.2范围内颗粒与液滴尺寸比的函数关系下的坍塌行为。我们表明,该参数控制着放气过程中防护层的行为:在小尺寸比时,液滴收缩通过单层的软皱缩进行;在中等尺寸比时,液滴变得有棱角;对于研究的最大尺寸比,防护层的行为类似于颗粒拱。结果表明,三种形态状态中的每一种都以坍塌压力的增大为特征。由于一种涉及防护层平面外变形和颗粒解缠结的机制,这种增加得到了定性建模。

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