Startup steady shear flow from the Oldroyd 8-constant framework

One good way to explore fluid microstructure, experimentally, is to suddenly subject the fluid to a large steady shearing deformation and to then observe the evolving stress response. If the steady shear rate is high enough, the shear stress and also the normal stress differences can overshoot, and...

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Published inPhysics of fluids (1994) Vol. 31; no. 6
Main Authors Saengow, C., Giacomin, A. J., Grizzuti, Nino, Pasquino, R.
Format Journal Article
LanguageEnglish
Published Melville American Institute of Physics 01.06.2019
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ISSN1070-6631
1089-7666
DOI10.1063/1.5091493

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Abstract One good way to explore fluid microstructure, experimentally, is to suddenly subject the fluid to a large steady shearing deformation and to then observe the evolving stress response. If the steady shear rate is high enough, the shear stress and also the normal stress differences can overshoot, and then they can even undershoot. We call such responses nonlinear and this experiment shear stress growth. This paper is devoted to providing exact analytical solutions for interpreting measured nonlinear shear stress growth responses. Specifically, we arrive at the exact solutions for the Oldroyd 8-constant constitutive framework. We test our exact solution against the measured behaviors of two wormlike micellar solutions. At high shear rates, these solutions overshoot in stress growth without subsequent undershoot. The micellar solutions present linear behavior at low shear rates; otherwise, their behavior is nonlinear. Our framework provides slightly early underpredictions of the overshoots at high shear rates. The effect of salt concentration on the nonlinear parameters is explored.
AbstractList One good way to explore fluid microstructure, experimentally, is to suddenly subject the fluid to a large steady shearing deformation and to then observe the evolving stress response. If the steady shear rate is high enough, the shear stress and also the normal stress differences can overshoot, and then they can even undershoot. We call such responses nonlinear and this experiment shear stress growth. This paper is devoted to providing exact analytical solutions for interpreting measured nonlinear shear stress growth responses. Specifically, we arrive at the exact solutions for the Oldroyd 8-constant constitutive framework. We test our exact solution against the measured behaviors of two wormlike micellar solutions. At high shear rates, these solutions overshoot in stress growth without subsequent undershoot. The micellar solutions present linear behavior at low shear rates; otherwise, their behavior is nonlinear. Our framework provides slightly early underpredictions of the overshoots at high shear rates. The effect of salt concentration on the nonlinear parameters is explored.
Author Grizzuti, Nino
Giacomin, A. J.
Saengow, C.
Pasquino, R.
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  organization: Università Degli Studi di Napoli Federico II, Department of Chemical, Materials and Industrial Production Engineering
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Snippet One good way to explore fluid microstructure, experimentally, is to suddenly subject the fluid to a large steady shearing deformation and to then observe the...
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SubjectTerms Deformation
Exact solutions
Fluid dynamics
Mathematical analysis
Physics
Shear flow
Shear rate
Shear stress
Shearing
Title Startup steady shear flow from the Oldroyd 8-constant framework
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Volume 31
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