English

Coarsening transitions of wet liquid foams under microgravity conditions

Soft Condensed Matter 2023-07-19 v2

Abstract

We report foam coarsening studies which were performed in the International Space Station (ISS) to suppress drainage due to gravity. Foams and bubbly liquids with controlled liquid fractions ϕ\phi between 15 and 50\% were investigated to study the transition between bubble growth laws previously reported near the dry limit ϕ0\phi \rightarrow 0 and the dilute limit ϕ1\phi \rightarrow 1 (Ostwald ripening). We determined the coarsening rates; for the driest foams and the bubbly liquids, they are in close agreement with theoretical predictions. We observe a sharp cross-over between the respective laws at a critical value ϕ\phi^*. At liquid fractions beyond this transition, neighboring bubbles are no longer all in contact, like at a jamming transition. Remarkably ϕ\phi^* is significantly larger than the random close packing volume fraction of the bubbles ϕrcp\phi_{\text{rcp}} which was determined independently. We attribute the differences between ϕ\phi^* and ϕrcp\phi_{\text{rcp}} to a weakly adhesive bubble interaction that we have studied in complementary ground-based experiments.

Keywords

Cite

@article{arxiv.2304.11206,
  title  = {Coarsening transitions of wet liquid foams under microgravity conditions},
  author = {Marina Pasquet and Nicolo Galvani and Alice Requier and Sylvie Cohen-Addad and Reinhard Höhler and Olivier Pitois and Emmanuelle Rio and Anniina Salonen and Dominique Langevin},
  journal= {arXiv preprint arXiv:2304.11206},
  year   = {2023}
}