Simulations of sheared polymer melts agree semi-quantitatively with a CCR-augmented Rolie-Poly model predicting shear banding for entanglement numbers Z above a critical Z_c(β) where β depends on chain bending stiffness.
Shear Banding in Simulations of Polymer Melts
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abstract
Results from numerical simulations of polymers under shear flow are compared with predictions for shear banding based on a model coupling Rolie-Poly-like tube dynamics to the entanglement dynamics mediated by Convected Constraint Release (CCR). CCR is controlled by a parameter $\beta$, whose dependence on the bending stiffness $k_{\theta}$ is calculated from the simulations. The model predicts shear banding for polymers whose equilibrium entanglement number $Z$ exceeds a critical value $Z_{c}$ that depends on $\beta$. The simulations are in semi-quantitative agreement with the model, with deviations that are attributed to approximations inherent in the model, and the inadequacy of tube models to describe partially-disentangled liquids in strong flow. These results may help determine which physical polymers could undergo shear banding.
fields
cond-mat.soft 1years
2026 1verdicts
UNVERDICTED 1representative citing papers
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Shear Banding in Simulations of Polymer Melts
Simulations of sheared polymer melts agree semi-quantitatively with a CCR-augmented Rolie-Poly model predicting shear banding for entanglement numbers Z above a critical Z_c(β) where β depends on chain bending stiffness.