Viscoelasticity and rheological hysteresis
Вязкоупругость и реологическая гистерезисная петля
2022-11-10
SCID: 54.1/wuwuw9as
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Giesekus modelcyclic shear-rate sweeprheological hysteresisshear banding instabilityviscoelasticity
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Abstract (AI)
Rheological characterization of complex fluids subjected to cyclic shear-rate sweep often exhibits hysteresis. Since both viscoelastic and thixotropic materials show hysteresis loops, it is important to understand distinguishing features (if any) in the same shown by either. Lately, there has been substantial work that attempts to relate the area enclosed by the hysteresis loop with the manner in which shear rate is varied in the cycle, in order to infer thixotropic parameters of a material. In this work, we use the nonlinear Giesekus model to study its response to the application of cyclic shear-rate sweep. We find that this model produces each type of qualitatively similar hysteresis loop that has hitherto been ascribed to thixotropic materials. We also show that the area of the hysteresis loop for a viscoelastic material as a function of sweep rate shows bell-shaped/bi-modal curves as has been observed for thixotropic materials. This study illustrates that caution needs to be exercised while attributing hysteresis loops and associated features observed in a material exclusively to thixotropy. Another feature related to the hysteresis loop is the occurrence of shear banding instability. We find that viscoelastic hysteresis may not have any connection to shear banding instability.
Key Findings
1
Hysteresis loops and associated features observed experimentally should not be attributed exclusively to thixotropy, as viscoelasticity can produce the same signatures.
2
The hysteresis loop area for a viscoelastic material as a function of sweep rate exhibits bell-shaped or bi-modal curves, matching observations in thixotropic materials.
3
The nonlinear Giesekus viscoelastic model produces qualitatively similar hysteresis loops previously attributed to thixotropic materials.
4
Viscoelastic hysteresis may occur without any connection to shear banding instability.
Research Object
Viscoelastic material modeled by the nonlinear Giesekus constitutive model subjected to cyclic shear-rate sweep
Research Subject
Rheological hysteresis behavior including hysteresis loop shapes, loop area dependence on sweep rate (bell-shaped/bi-modal), and relation to shear-banding instability during cyclic shear-rate sweeps
Publication Details
Publication Date
2022-11-10
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