Elasto-viscous regime in coalescence of viscoelastic droplets

P Pallavi Katre (Department of Mechanical Engineering) B Bimalendu Mahapatra (Department of Mechanical Engineering) M Manaswita Karmakar (Department of Mechanical Engineering) S Sarang Jagdish (Department of Mechanical Engineering) N Navin Kumar Chandra (Aix Marseille University) A Aloke Kumar (Department of Mechanical Engineering)

Abstract

The merging of two droplets represents an energy-minimizing process whereby they combine to produce a thermodynamically stable droplet. Coalescence of Newtonian droplets is characterized by distinct viscous and inertial regimes. In contrast, viscoelastic fluids containing polymers display additional regimes when elastic and viscous stresses are comparable. We reveal a transition from an elasticity-dominated regime to an elasto-viscous regime in the coalescence of concentrated polymer droplets. Experimental measurements of interface curvature reveal that common assumptions used to estimate axial curvature are not universal. Using numerical simulations based on a volume-of-fluid framework with the exponential Phan–Thien–Tanner model, we reproduce the viscoelastic neck growth in good agreement with experiments. These results advance the understanding of droplet coalescence and highlight the role of viscoelastic effects in complex fluids.

Article Details

Volume / Issue Vol. 123, Issue 17
Published April 28, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

P

Pallavi Katre

Department of Mechanical Engineering

B

Bimalendu Mahapatra

Department of Mechanical Engineering

M

Manaswita Karmakar

Department of Mechanical Engineering

S

Sarang Jagdish

Department of Mechanical Engineering

N

Navin Kumar Chandra

Aix Marseille University

A

Aloke Kumar

Department of Mechanical Engineering