Droplets sitting on thin elastic sheets: A study with the boundary element method

Fuente: arXiv
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Auteurs principaux: Sultan, Salik, Grawitter, Josua, Antunes, Gonçalo C., Stark, Holger
Format: Preprint
Publié: 2026
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author Sultan, Salik
Grawitter, Josua
Antunes, Gonçalo C.
Stark, Holger
author_facet Sultan, Salik
Grawitter, Josua
Antunes, Gonçalo C.
Stark, Holger
contents Elasto-capillarity of a droplet wetting an elastic sheet provides an interesting system, both for fundamental and applied research. The droplet sinks into the sheet and assumes the shape of a lens. To determine the equilibrium shape in simulations, we formulate a boundary element method (BEM) extending our earlier approaches, and apply the BEM to three specific protocols for the boundary conditions of the sheet. For a clamped elastic sheet, we use various morphological metrics to demonstrate that the lens shape crucially depends on the sheet thickness. Stretching the sheet isotropically, allows for an additional control parameter to influence the droplet shape and the tension in the sheet, which we quantify by radial profiles of the azimuthal and radial elastic stresses. We further demonstrate how the focal length of a liquid lens can be tuned by varying the applied tension. Finally, stretching the sheet along one direction, elongates the droplet, and the sheet shows folds and dimples.
format Preprint
id arxiv_https___arxiv_org_abs_2605_31258
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Droplets sitting on thin elastic sheets: A study with the boundary element method
Sultan, Salik
Grawitter, Josua
Antunes, Gonçalo C.
Stark, Holger
Soft Condensed Matter
Elasto-capillarity of a droplet wetting an elastic sheet provides an interesting system, both for fundamental and applied research. The droplet sinks into the sheet and assumes the shape of a lens. To determine the equilibrium shape in simulations, we formulate a boundary element method (BEM) extending our earlier approaches, and apply the BEM to three specific protocols for the boundary conditions of the sheet. For a clamped elastic sheet, we use various morphological metrics to demonstrate that the lens shape crucially depends on the sheet thickness. Stretching the sheet isotropically, allows for an additional control parameter to influence the droplet shape and the tension in the sheet, which we quantify by radial profiles of the azimuthal and radial elastic stresses. We further demonstrate how the focal length of a liquid lens can be tuned by varying the applied tension. Finally, stretching the sheet along one direction, elongates the droplet, and the sheet shows folds and dimples.
title Droplets sitting on thin elastic sheets: A study with the boundary element method
topic Soft Condensed Matter
url https://arxiv.org/abs/2605.31258