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首页> 外文期刊>The European physical journal, E. Soft matter >Rapid Plateau border size variations expected in three simple experiments on 2D liquid foams
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Rapid Plateau border size variations expected in three simple experiments on 2D liquid foams

机译:在二维液体泡沫的三个简单实验中,预计高原边界尺寸会快速变化

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Up to a global scaling, the geometry of foams squeezed between two solid plates (2D GG foams) essentially depends on two independent parameters: the liquid volume fraction and the degree of squeezing (bubble thickness to diameter ratio). We describe it in two main asymptotic regimes: fully dry floor tiles, where the Plateau border radius is smaller than the distance between the solid plates, and dry pancakes, where it is larger. We predict a rapid variation of the Plateau border radius in one part of the pancake regime, namely when the Plateau border radius is larger than the inter-plate distance but smaller than the geometric mean of that distance and the bubble perimeter. This rapid variation is not related to any topological change in the foam: in all the regimes we consider, the bubbles remain in mutual lateral contact through films located at mid-height between both plates. We provide asymptotic predictions in different types of experiments on such 2D GG foams: when foam is being progressively dried or wetted, when it is being squeezed further or stretched, when it coarsens through film breakage or through inter-bubble gas diffusion. Our analysis is restricted to configurations close to equilibrium, as we do not include stresses resulting from bulk viscous flow or from non-homogeneous surfactant concentrations. We also assume that the inter-plate distance is sufficiently small for gravity to be negligible. The present work does not provide a method for measuring small Plateau border radii experimentally, but it indicates that large (and easily observable) Plateau borders should appear or disappear rather suddenly in some types of experiments with small inter-plate gaps. It also gives expected orders of magnitude that should be helpful for designing experiments on 2D GG foams.
机译:在全球范围内,两个固体板之间挤压的泡沫的几何形状(2D GG泡沫)基本上取决于两个独立的参数:液体体积分数和挤压程度(气泡厚度与直径之比)。我们用两种主要的渐近方式来描述它:完全干燥的地砖,其高原边界半径小于实心板之间的距离;以及干燥的煎饼,其较大。我们预测在煎饼状态的一部分中高原边界半径会迅速变化,即当高原边界半径大于板间距离但小于该距离和气泡周长的几何平均值时。这种快速变化与泡沫的任何拓扑变化都没有关系:在我们考虑的所有状态下,气泡都通过位于两块板之间中间高度的膜保持相互横向接触。我们提供了有关此类2D GG泡沫的不同类型实验的渐近预测:当泡沫逐渐干燥或润湿时,当泡沫被进一步挤压或拉伸时,当膜破裂或通过气泡间气体扩散而变粗时。我们的分析仅限于接近平衡的构型,因为我们不包括由整体粘性流动或非均匀表面活性剂浓度引起的应力。我们还假设板间距离足够小,以至于重力可以忽略不计。目前的工作没有提供实验性地测量小的高原边界半径的方法,但是它表明大的(易于观察的)高原边界在某些类型的具有较小板间间隙的实验中应该突然出现或消失。它还给出了预期的数量级,这将有助于设计2D GG泡沫的实验。

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