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由针固定的弹性毛细管膜的分析描述。

Analytical description of elastocapillary membranes held by needles.

作者信息

Farago Jean, Drenckhan-Andreatta Wiebke

机构信息

Institut Charles Sadron, CNRS UPR-22, Université de Strasbourg, Strasbourg, France.

出版信息

Soft Matter. 2024 Jun 20;20(24):4707-4714. doi: 10.1039/d3sm01737k.

Abstract

Fluid objects bounded by elastocapillary membranes display intriguing physical properties due to the interplay of capillary and elastic stresses arising upon deformation. Increasingly exploited in foam or emulsion science, the mechanical properties of elastocapillary membranes are commonly characterised by the shape analysis of inflating/deflating bubbles or drops held by circular needles. These impose complex constraints on the membrane deformation, requiring the shape analysis to be done using elaborate numerical fitting procedures of the shape equations. While this approach has proven quite reliable, it obscures insight into the underlying physics of the problem. We therefore propose here the first fully theoretical approach to this problem using the elastic theory for a membrane with additive contributions of capillary and Hookean-type elastic stresses. We exploit this theory to discuss some of the key features of the predicted pressure-deformation relations. Interestingly, we highlight a breakdown of the quadratic approximation at a well-defined value of the elastocapillary parameter depending on the shape of the reference state, which is regularized by the non-quadratic terms. Additionally, we provide an analytical relationship which allows experimentalists to obtain the elastocapillary properties of a membrane by simple measurement of the height and the width of a deformed bubble (or a drop).

摘要

由弹性毛细管膜界定的流体对象由于变形时产生的毛细管应力和弹性应力的相互作用而呈现出有趣的物理性质。弹性毛细管膜的力学性能在泡沫或乳液科学中得到越来越多的应用,通常通过对由圆形针夹持的充气/放气气泡或液滴进行形状分析来表征。这些对膜的变形施加了复杂的约束,需要使用形状方程的精细数值拟合程序来进行形状分析。虽然这种方法已被证明相当可靠,但它掩盖了对问题潜在物理原理的洞察。因此,我们在此提出针对该问题的第一种完全理论化的方法,使用弹性理论来处理具有毛细管应力和胡克型弹性应力叠加贡献的膜。我们利用该理论来讨论预测的压力 - 变形关系的一些关键特征。有趣的是,我们强调了在取决于参考状态形状的明确定义的弹性毛细管参数值处二次近似的失效,这由非二次项进行了正则化。此外,我们提供了一种解析关系,使实验人员能够通过简单测量变形气泡(或液滴)的高度和宽度来获得膜的弹性毛细管性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7297/11187731/651cd01a01aa/d3sm01737k-f2.jpg

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