Impact of viscoelastic polymer solution droplets on a granular bed

Fuente: arXiv
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Main Authors: Park, Jooyeon, Meiller, Theophile, Rajesh, Sreeram, Sauret, Alban
Format: Preprint
Published: 2026
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author Park, Jooyeon
Meiller, Theophile
Rajesh, Sreeram
Sauret, Alban
author_facet Park, Jooyeon
Meiller, Theophile
Rajesh, Sreeram
Sauret, Alban
contents The impact of polymer solution droplets on granular beds is relevant to powder processing, binder jetting additive manufacturing, and environmental applications involving erosion control or spray deposition, yet most controlled studies of drop--grain interactions have focused on Newtonian liquids. In this study, we experimentally investigate the impact of viscoelastic polyethylene oxide (PEO) droplets on a dry granular bed and compare the resulting cratering dynamics with those of Newtonian liquids over a wide range of impact energies and Ohnesorge numbers. Crater morphology changes with impact energy, and this evolution occurs at lower energies for drops of polymer solution, consistent with their distinct liquid--grain interactions during impact. The crater diameter exhibits two distinct regimes: a low-energy plateau and a power-law growth at higher impact energies. We identify the transition between these regimes and show that, although the plateau size and the power law remain nearly unchanged, viscoelastic droplets reach the transition at lower impact energy than Newtonian droplets. This suggests that viscoelasticity modifies how the impact energy is partitioned between droplet deformation and dissipation in the granular bed.
format Preprint
id arxiv_https___arxiv_org_abs_2606_00319
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Impact of viscoelastic polymer solution droplets on a granular bed
Park, Jooyeon
Meiller, Theophile
Rajesh, Sreeram
Sauret, Alban
Soft Condensed Matter
Fluid Dynamics
The impact of polymer solution droplets on granular beds is relevant to powder processing, binder jetting additive manufacturing, and environmental applications involving erosion control or spray deposition, yet most controlled studies of drop--grain interactions have focused on Newtonian liquids. In this study, we experimentally investigate the impact of viscoelastic polyethylene oxide (PEO) droplets on a dry granular bed and compare the resulting cratering dynamics with those of Newtonian liquids over a wide range of impact energies and Ohnesorge numbers. Crater morphology changes with impact energy, and this evolution occurs at lower energies for drops of polymer solution, consistent with their distinct liquid--grain interactions during impact. The crater diameter exhibits two distinct regimes: a low-energy plateau and a power-law growth at higher impact energies. We identify the transition between these regimes and show that, although the plateau size and the power law remain nearly unchanged, viscoelastic droplets reach the transition at lower impact energy than Newtonian droplets. This suggests that viscoelasticity modifies how the impact energy is partitioned between droplet deformation and dissipation in the granular bed.
title Impact of viscoelastic polymer solution droplets on a granular bed
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2606.00319