Elastic behavior of confined soap froth.

Soft Matter

Sorbonne Université, CNRS-UMR7588, Institut des NanoSciences de Paris, 4 place Jussieu, 75005 Paris, France.

Published: October 2019

AI Article Synopsis

  • The study investigates the elastic behavior of a 3D soap froth confined between two rigid walls, focusing on the arrangement of cells and how they respond to shear stress.
  • Simulations reveal that the equilibrium structure consists of Fejes-Toth cells at the walls and Kelvin cells in the core, with variations in confinement impacting elastic properties and shear moduli.
  • The elastic limit is influenced by foam confinement, and topological transitions are analyzed, highlighting similarities with bulk Kelvin foam behavior.

Article Abstract

The elastic response of ordered 3D soap froth, in which N layers of cells are confined between two rigid walls, is analyzed. Surface Evolver simulations are used to compute the equilibrium structure, which consists of a layer of Fejes-Toth cells at each wall and N - 2 core layers of Kelvin cells. The reference state corresponds to the plate spacing ho that achieves isotropic stress; and the foam confinement is varied by changing h. The foam is sheared in two orthogonal directions to determine elastic behavior up to the elastic limit or yield strain, which corresponds to the onset of topological transitions. The shear moduli in both directions decrease as N increases and slowly converge to the values of bulk Kelvin foam; the dependence on N is well described by a three-layer model consisting of Fejes-Toth cells and a core of Kelvin cells that deform like bulk foam. The influence of foam confinement on the elastic limit is studied. The topological transitions are compared to those in bulk Kelvin foam.

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Source
http://dx.doi.org/10.1039/c9sm01280jDOI Listing

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