Relation between Cooling rate and Viscosity in Newtonian fluid

AI Thread Summary
The discussion focuses on the relationship between cooling rate and viscosity in a molten aluminum-copper alloy during solidification. The participant seeks expressions that connect temperature gradients and cooling rates to viscosity in the context of non-Newtonian fluids. One contributor argues that viscosity may not significantly impact the process, suggesting that conduction is the dominant factor due to thermal conductivity. However, another participant cites the Krieger Rheological model, emphasizing that viscosity is crucial in micro-scale flow during solidification. Understanding this relationship is essential for optimizing the solidification process in metal casting.
ronin777
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Relation between Cooling rate and Viscosity

Hi all

I have a situation where i have a molten Aluminium Copper alloy melt poured in a mould
to be solidified. This means, the mould temperature is lower than than than the poured melt. I am thinking about a relation which associates temperature or temperature gradient across the fluid in the mould or the cooling rate because of the temperature gradient with the viscosity situation in the melt.
Please suggest expression(s) for the same in such a case.

P.S.: Correction: Assumption is non-Newtonian

Best Regards
Ronin
 
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I don't see why the viscosity would matter here. This problem seems to be to be dominated by conduction, which really only depends the thermal conductivity of the materials in question. Barring a very low viscosity material, I wouldn't expect there to be enough flow for convection to play any important role.
 
@boneh3ad

According to Krieger Rheological model, viscosity depends on the developing solid fraction in a solidification process and i am dealing with flow in micro range here. So, it is important for me.
 
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