Literature DB >> 30110853

Coarsening and mechanics in the bubble model for wet foams.

Kseniia Khakalo1, Karsten Baumgarten2, Brian P Tighe2, Antti Puisto1.   

Abstract

Aqueous foams are an important model system that displays coarsening dynamics. Coarsening in dispersions and foams is well understood in the dilute and dry limits, where the gas fraction tends to zero and one, respectively. However, foams are known to undergo a jamming transition from a fluidlike to a solidlike state at an intermediate gas fraction ϕ_{c}. Much less is known about coarsening dynamics in wet foams near jamming, and the link to mechanical response, if any, remains poorly understood. Here we probe coarsening and mechanical response using numerical simulations of a variant of the Durian bubble model for wet foams. As in other coarsening systems we find a steady state scaling regime with an associated particle size distribution. We relate the time rate of evolution of the coarsening process to the wetness of the foam and identify a characteristic coarsening time that diverges approaching jamming. We further probe mechanical response of the system to strain while undergoing coarsening. There are two competing timescales, namely the coarsening time and the mechanical relaxation time. We relate these to the evolution of the elastic response and the mechanical structure.

Entities:  

Year:  2018        PMID: 30110853     DOI: 10.1103/PhysRevE.98.012607

Source DB:  PubMed          Journal:  Phys Rev E        ISSN: 2470-0045            Impact factor:   2.529


  1 in total

1.  An Innovatory Surgical Technique for Submacular Hemorrhage Displacement by Means of a Bioengineering Perspective.

Authors:  George Pappas; Nectarios Vidakis; Markos Petousis; Vasiliki Kounali; Apostolos Korlos
Journal:  Vision (Basel)       Date:  2021-05-18
  1 in total

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