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Erschienen in: Rheologica Acta 2/2010

01.02.2010 | Original Contribution

Large amplitude oscillatory shear of pseudoplastic and elastoviscoplastic materials

verfasst von: Randy H. Ewoldt, Peter Winter, Jason Maxey, Gareth H. McKinley

Erschienen in: Rheologica Acta | Ausgabe 2/2010

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Abstract

We explore the utility of strain-controlled large amplitude oscillatory shear (LAOS) deformation for identifying and characterizing apparent yield stress responses in elastoviscoplastic materials. Our approach emphasizes the visual representation of the LAOS stress response within the framework of Lissajous curves with strain, strain rate, and stress as the coordinate axes, in conjunction with quantitative analysis of the corresponding limit cycle behavior. This approach enables us to explore how the material properties characterizing the yielding response depend on both strain amplitude and frequency of deformation. Canonical constitutive models (including the purely viscous Carreau model and the elastic Bingham model) are used to illustrate the characteristic features of pseudoplastic and elastoplastic material responses under large amplitude oscillatory shear. A new parameter, the perfect plastic dissipation ratio, is introduced for uniquely identifying plastic behavior. Experimental results are presented for two complex fluids, a pseudoplastic shear-thinning xanthan gum solution and an elastoviscoplastic invert-emulsion drilling fluid. The LAOS test protocols and the associated material measures provide a rheological fingerprint of the yielding behavior of a complex fluid that can be compactly represented within the domain of a Pipkin diagram defined by the amplitude and timescale of deformation.

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1
The terms elastic, viscous, and plastic are sometimes used to refer to specific components of constitutive equations, but here the term elastoviscoplastic is used to refer to experimentally measured material responses as described in the text.
 
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Metadaten
Titel
Large amplitude oscillatory shear of pseudoplastic and elastoviscoplastic materials
verfasst von
Randy H. Ewoldt
Peter Winter
Jason Maxey
Gareth H. McKinley
Publikationsdatum
01.02.2010
Verlag
Springer-Verlag
Erschienen in
Rheologica Acta / Ausgabe 2/2010
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-009-0403-7

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