Issue 4, 2024

Rheology of bi-disperse dense fiber suspensions

Abstract

While significant progress has been made in the modeling and simulation of uniform fiber suspensions, no existing model has been validated for industrially-relevant concentrated suspensions containing fibers of multiple aspect ratios. In the present work, we investigate bi-disperse suspensions with two fiber populations in varying aspect ratios in a steady shear flow using direct numerical simulations. Moreover, we measure the suspension viscosity by creating a controlled length bidispersity for nylon fibers suspended in a Newtonian fluid. The results showed good agreement between the experimentally measured and numerically predicted viscosity for bi-disperse suspensions. The ratio between the aspect ratio of large to small fibers (size ratio) and the volume fraction of large fibers (composition) in bi-disperse systems strongly affected the rheological behavior of the suspension. The increment of relative viscosity associated with size ratio and composition can be explained by the decrease in the maximum flowable limit or jamming volume fraction. Moreover, the relative viscosity of bi-disperse suspensions collapses, when plotted against the reduced volume fraction, demonstrating the controlling influence of the jamming fraction in bi-disperse fiber suspensions.

Graphical abstract: Rheology of bi-disperse dense fiber suspensions

Supplementary files

Article information

Article type
Paper
Submitted
16 Jun 2023
Accepted
15 Nov 2023
First published
03 Jan 2024

Soft Matter, 2024,20, 856-868

Rheology of bi-disperse dense fiber suspensions

M. Khan, R. D. Corder, K. A. Erk and A. M. Ardekani, Soft Matter, 2024, 20, 856 DOI: 10.1039/D3SM00787A

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