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Structural predictor for nonlinear sheared dynamics in simple glass-forming liquids
by
Ingebrigtsen, Trond S.
, Tanaka, Hajime
in
Entropy
/ Fluid dynamics
/ Glass formation
/ Liquids
/ Physical Sciences
/ Physics
/ Relaxation time
/ Scaling
/ Shear flow
/ Shear rate
/ Shear thinning (liquids)
/ Viscosity
2018
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Structural predictor for nonlinear sheared dynamics in simple glass-forming liquids
by
Ingebrigtsen, Trond S.
, Tanaka, Hajime
in
Entropy
/ Fluid dynamics
/ Glass formation
/ Liquids
/ Physical Sciences
/ Physics
/ Relaxation time
/ Scaling
/ Shear flow
/ Shear rate
/ Shear thinning (liquids)
/ Viscosity
2018
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Do you wish to request the book?
Structural predictor for nonlinear sheared dynamics in simple glass-forming liquids
by
Ingebrigtsen, Trond S.
, Tanaka, Hajime
in
Entropy
/ Fluid dynamics
/ Glass formation
/ Liquids
/ Physical Sciences
/ Physics
/ Relaxation time
/ Scaling
/ Shear flow
/ Shear rate
/ Shear thinning (liquids)
/ Viscosity
2018
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Structural predictor for nonlinear sheared dynamics in simple glass-forming liquids
Journal Article
Structural predictor for nonlinear sheared dynamics in simple glass-forming liquids
2018
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Overview
Glass-forming liquids subjected to sufficiently strong shear universally exhibit striking nonlinear behavior; for example, a power-law decrease of the viscosity with increasing shear rate. This phenomenon has attracted considerable attention over the years from both fundamental and applicational viewpoints. However, the out-of-equilibrium and nonlinear nature of sheared fluids have made theoretical understanding of this phenomenon very challenging and thus slower to progress. We find here that the structural relaxation time as a function of the two-body excess entropy, calculated for the extensional axis of the shear flow, collapses onto the corresponding equilibrium curve for a wide range of pair potentials ranging from harsh repulsive to soft and finite. This two-body excess entropy collapse provides a powerful approach to predicting the dynamics of nonequilibrium liquids from their equilibrium counterparts. Furthermore, the two-body excess entropy scaling suggests that sheared dynamics is controlled purely by the liquid structure captured in the form of the two-body excess entropy along the extensional direction, shedding light on the perplexing mechanism behind shear thinning.
Publisher
National Academy of Sciences
Subject
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