Elastic ribbons in bubble columns: when elasticity, capillarity and gravity govern equilibrium configurations

Fuente: arXiv
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Autori principali: Farago, Jean, Jouanlanne, Manon, Egelé, Antoine, Hourlier-Fargette, Aurélie
Natura: Preprint
Pubblicazione: 2024
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author Farago, Jean
Jouanlanne, Manon
Egelé, Antoine
Hourlier-Fargette, Aurélie
author_facet Farago, Jean
Jouanlanne, Manon
Egelé, Antoine
Hourlier-Fargette, Aurélie
contents Taking advantage of the competition between elasticity and capillarity has proven to be an efficient way to design structures by folding, bending, or assembling elastic objects in contact with liquid interfaces. Elastocapillary effects often occur at scales where gravity does not play an important role, such as in microfabrication processes. However, the influence of gravity can become significant at the desktop scale, which is relevant for numerous situations including model experiments used to provide a fundamental physics understanding, working at easily accessible scales. We focus here on the case of elastic ribbons placed in two-dimensional bubble columns: by introducing an elastic ribbon inside the central soap films of a staircase bubble structure in a square cross-section column, the deviation from Plateau's laws (capillarity-dominated case dictating the shape of usual foams) can be quantified as a function of the rigidity of the ribbon. For long ribbons, gravity cannot be neglected. We provide a detailed theoretical analysis of the ribbon profile, taking into account capillarity, elasticity and gravity. We compute the total energy of the system and perform energy minimization under constraints, using Lagrangian mechanics. The model is then validated via a comparison with experiments with three different ribbon thicknesses.
format Preprint
id arxiv_https___arxiv_org_abs_2404_06322
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Elastic ribbons in bubble columns: when elasticity, capillarity and gravity govern equilibrium configurations
Farago, Jean
Jouanlanne, Manon
Egelé, Antoine
Hourlier-Fargette, Aurélie
Soft Condensed Matter
Taking advantage of the competition between elasticity and capillarity has proven to be an efficient way to design structures by folding, bending, or assembling elastic objects in contact with liquid interfaces. Elastocapillary effects often occur at scales where gravity does not play an important role, such as in microfabrication processes. However, the influence of gravity can become significant at the desktop scale, which is relevant for numerous situations including model experiments used to provide a fundamental physics understanding, working at easily accessible scales. We focus here on the case of elastic ribbons placed in two-dimensional bubble columns: by introducing an elastic ribbon inside the central soap films of a staircase bubble structure in a square cross-section column, the deviation from Plateau's laws (capillarity-dominated case dictating the shape of usual foams) can be quantified as a function of the rigidity of the ribbon. For long ribbons, gravity cannot be neglected. We provide a detailed theoretical analysis of the ribbon profile, taking into account capillarity, elasticity and gravity. We compute the total energy of the system and perform energy minimization under constraints, using Lagrangian mechanics. The model is then validated via a comparison with experiments with three different ribbon thicknesses.
title Elastic ribbons in bubble columns: when elasticity, capillarity and gravity govern equilibrium configurations
topic Soft Condensed Matter
url https://arxiv.org/abs/2404.06322