Publication | Open Access
Cooperative Shear Model for the Rheology of Glass-Forming Metallic Liquids
142
Citations
22
References
2006
Year
Materials ScienceRheological Constitutive EquationViscoplastic FluidRheological MeasurementEngineeringFlow ZonesGlass-forming LiquidCooperative Shear ModelMechanicsFluid MechanicsMechanical EngineeringRheological PropertyRheologyRheological LawRheology ControlSteady-state ViscositiesMultiphase FlowSoft Matter
A rheological law based on the concept of cooperatively sheared flow zones is presented, in which the effective thermodynamic state variable controlling flow is identified to be the isoconfigurational shear modulus of the liquid. The law captures Newtonian as well as non-Newtonian viscosity data for glass-forming metallic liquids over a broad range of fragility. Acoustic measurements on specimens deformed at a constant strain rate correlate well with the measured steady-state viscosities, hence verifying that viscosity has a unique functional relationship with the isoconfigurational shear modulus.
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