Coalescence of viscoelastic drops on a solid substrate

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Rostami, Peyman, Erb, Alexander, Azizmalayeri, Reza, Steinmann, Johanna, Stark, Robert W., Auernhammer, Günter K.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911154320703488
author Rostami, Peyman
Erb, Alexander
Azizmalayeri, Reza
Steinmann, Johanna
Stark, Robert W.
Auernhammer, Günter K.
author_facet Rostami, Peyman
Erb, Alexander
Azizmalayeri, Reza
Steinmann, Johanna
Stark, Robert W.
Auernhammer, Günter K.
contents This study investigated the coalescence of polymer solution drops on the solid substrates. When two drops meet at their contact line on a substrate, the liquid bridge connecting the two drops increases in size with time. The height and radius of the liquid bridge have a power law dependence on time. In the early stage of drop coalescence, the exponents $α$ and $β$ of the power law are influenced by the properties of the polymer solution. We argued that the balance between capillarity and viscoelasticity controls the process, where viscoelasticity must be considered in its full time and shear-rate dependency. As a simple proxy for the processes involved, the ratio of the polymer relaxation time to the viscous time of the drop, the elastocapillary ($Ec$), is instructive. In the vicinity of $Ec= 1$ the exponents showed a minimum and increased to lower and higher values of $Ec$. A similar dependency is observed for the damping timescales of the capillary waves. For high elastocapillary numbers, i.e. high polymer relaxation time, drop coalescence on short timescales behaved as in the low viscosity case. In addition, the bridge profile is influenced by a combination of factors including surface tension, viscosity and polymer stress. In summary, we have shown that drop coalescence is strongly influenced by the viscoelasticity of the drops.
format Preprint
id arxiv_https___arxiv_org_abs_2412_12058
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coalescence of viscoelastic drops on a solid substrate
Rostami, Peyman
Erb, Alexander
Azizmalayeri, Reza
Steinmann, Johanna
Stark, Robert W.
Auernhammer, Günter K.
Fluid Dynamics
Soft Condensed Matter
This study investigated the coalescence of polymer solution drops on the solid substrates. When two drops meet at their contact line on a substrate, the liquid bridge connecting the two drops increases in size with time. The height and radius of the liquid bridge have a power law dependence on time. In the early stage of drop coalescence, the exponents $α$ and $β$ of the power law are influenced by the properties of the polymer solution. We argued that the balance between capillarity and viscoelasticity controls the process, where viscoelasticity must be considered in its full time and shear-rate dependency. As a simple proxy for the processes involved, the ratio of the polymer relaxation time to the viscous time of the drop, the elastocapillary ($Ec$), is instructive. In the vicinity of $Ec= 1$ the exponents showed a minimum and increased to lower and higher values of $Ec$. A similar dependency is observed for the damping timescales of the capillary waves. For high elastocapillary numbers, i.e. high polymer relaxation time, drop coalescence on short timescales behaved as in the low viscosity case. In addition, the bridge profile is influenced by a combination of factors including surface tension, viscosity and polymer stress. In summary, we have shown that drop coalescence is strongly influenced by the viscoelasticity of the drops.
title Coalescence of viscoelastic drops on a solid substrate
topic Fluid Dynamics
Soft Condensed Matter
url https://arxiv.org/abs/2412.12058