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Elastocapillary deformation of thin elastic ribbons in 2D foam columns.

Authors :
Jouanlanne M
Egelé A
Favier D
Drenckhan W
Farago J
Hourlier-Fargette A
Source :
Soft matter [Soft Matter] 2022 Mar 23; Vol. 18 (12), pp. 2325-2331. Date of Electronic Publication: 2022 Mar 23.
Publication Year :
2022

Abstract

The ability of liquid interfaces to shape slender elastic structures provides powerful strategies to control the architecture of mechanical self assemblies. However, elastocapillarity-driven intelligent design remains unexplored in more complex architected liquids - such as foams. Here we propose a model system which combines an assembly of bubbles and a slender elastic structure. Arrangements of soap bubbles in confined environments form well-defined periodic structures, dictated by Plateau's laws. We consider a 2D foam column formed in a container with square cross-section in which we introduce an elastomer ribbon, leading to architected structures whose geometry is guided by a competition between elasticity and capillarity. In this system, we quantify both experimentally and theoretically the equilibrium shapes, using X-ray micro-tomography and energy minimisation techniques. Beyond the understanding of the amplitude of the wavy elastic ribbon deformation, we provide a detailed analysis of the profile of the ribbon, and show that such a setup can be used to grant a shape to a UV-curable composite slender structure, as a foam-forming technique suitable to miniaturisation. In more general terms, this work provides a stepping stone towards an improved understanding of the interactions between liquid foams and slender structures.

Details

Language :
English
ISSN :
1744-6848
Volume :
18
Issue :
12
Database :
MEDLINE
Journal :
Soft matter
Publication Type :
Academic Journal
Accession number :
35174372
Full Text :
https://doi.org/10.1039/d1sm01687c