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Rheological profile of boron nitride–ethylene glycol nanofluids
48
Citations
23
References
2015
Year
Materials ScienceRheological Constitutive EquationRheological MeasurementRheological ProfileFluid PropertiesEngineeringDynamic ViscosityNanomaterialsNanotechnologyFluid MechanicsBoron NitrideApplied PhysicsRheological PropertyNanofluidicsRheologyRheology ControlComplete Rheological Profile
The paper presents the complete rheological profile of boron nitride (BN)–ethylene glycol (EG) nanofluids. Nanofluids have been produced by two-step method on the basis of commercially available powder of plate-like grains of nanometrical thickness. Viscoelastic structure has been determined in oscillatory measurements at a constant frequency and temperature. Viscosity and flow curves for these materials have been measured. Studies have shown that the Carreau model can be used for the modeling of dynamic viscosity curves of the material. The samples were tested for the presence of thixotropy. The dependence of viscosity on temperature was also examined. The effect of temperature on the dynamic viscosity of BN-EG nanofluids can be modelled with the use of Vogel-Fulcher-Tammann expression.
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