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February 22, 2026Rheologica Acta0 citations

Rheology of fiber–reinforced xanthan gum solutions

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MFMohsen FaramarziSTSeyed Mohammad Taghavi

Key Points

  • This research aims to investigate the rheological behavior of fiber-reinforced xanthan gum solutions under different conditions.
  • Varying fiber concentration from 0 to 4 g/L
  • Testing fiber lengths between 1.8 and 12 mm
  • Conducting steady shear sweeps, oscillatory amplitude sweeps, and creep tests
  • Identified three rheological regimes based on fiber properties and shear rate
  • Higher fiber concentrations and longer fibers increased viscosity across all shear rates
  • Temperature effects induced thinning, impacting yield stress and consistency

Abstract

We investigate the rheology of synthetic organic fiber–reinforced xanthan gum solutions, via varying fiber concentration (0–4 g/L), length (1. 8–12 mm), and temperature (10–50 \ (^\) C). Steady shear sweeps, oscillatory amplitude sweeps, and creep tests are performed. Three regimes are identified: (i) weak-interaction, where short fibers or low concentrations have little effect; (ii) shear-responsive networks, where intermediate fibers form weak structures at low shear that collapse under higher shear; and (iii) network-dominated, where higher concentrations and longer fibers increase viscosity across all shear rates and intensify non-Newtonian behavior. Oscillatory and creep tests confirm progressive network formation, increased elasticity, higher storage modulus, and elevated crossover stresses. Creep data show a transition from fluid-like to bounded, solid-like deformation. Temperature induces thinning, partly offset at higher loadings, while longer fibers raise yield stress and consistency, especially at high concentrations.

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Cite This Study

Faramarzi et al. (2026) studied this question.

synapsesocial.com/papers/699a534bfdaf4e3c1268edf4https://doi.org/10.1007/s00397-025-01544-5
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