High-frequency Rheology of a High Viscosity Silicone Oil Using Diffusing Wave Spectroscopy

Abstract: Measurements and modeling of rheological properties of a high viscosity silicone oil (polydimethylsiloxane, PDMS) at high frequency are reported. The linear viscoelastic properties are measured by small amplitude oscillation shear (SAOS) tests with a rotational rheometer. Furthermore, Diffusing Wave Spectroscopy (DWS) is used, which expands the angular frequency range of the measured loss and storage moduli up to 105 rad/s, in a temperature range of 20 - 70°C. Good agreement between both methods is found in the overlapping frequency region, especially at higher temperatures. The DWS data show that the elastic modulus stays dominant and increases with frequency, without a second cross-over point up till 108 rad/s. Flow curves, measured with rotational and with capillary rheometry up to a shear rate of 7.6 · 104 s-1, show shear thinning behavior, which implies nonlinear viscoelasticity. Comparison of the dynamic and complex viscosity shows that the Cox-Merz rule is valid in a frequency range spanning six orders of magnitude. A multi-element White-Metzner model is proposed as a constitutive equation, which accurately describes the nonlinear viscoelastic properties, including the decrease of the loss and storage moduli during amplitude sweeps in oscillatory shear measurements.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
High-frequency Rheology of a High Viscosity Silicone Oil Using Diffusing Wave Spectroscopy ; volume:24 ; number:6 ; year:2014 ; pages:32-38 ; extent:7
Applied rheology ; 24, Heft 6 (2014), 32-38 (gesamt 7)

Urheber
Kőkuti, Z.
Gruijthuijsen, K. van
Jenei, M.
Tóth-Molnár, G.
Czirják, A.
Kokavecz, J.
Ailer, P.
Palkovics, L.
Völker, A. C.
Szabó, G.

DOI
10.3933/applrheol-24-63984
URN
urn:nbn:de:101:1-2405241659182.185587070143
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
14.08.2025, 10:53 MESZ

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Beteiligte

  • Kőkuti, Z.
  • Gruijthuijsen, K. van
  • Jenei, M.
  • Tóth-Molnár, G.
  • Czirják, A.
  • Kokavecz, J.
  • Ailer, P.
  • Palkovics, L.
  • Völker, A. C.
  • Szabó, G.

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