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- W2029250855 abstract "A new method is presented for determining essentially exact non-Newtonian behaviour of simple liquids such as liquid argon, chlorine and water, whose molecules can be roughly represented by spherically averaged Lennard-Jones pair potentials. The technique of Non-Equilibrium Molecular Dynamics, NEMD, shows that even these simple liquids shear thin, have a second-Newtonian region and shear thicken. These phenomena have been associated in the past with complex mechanisms and structures. The appearance of these effects in such simple systems demands a re-evaluation of the former approaches. As with experimental techniques the viscosities were most accurately obtained only within a certain shear rate range. As a result, literature analytical fits were sought for the data. The Carreau and Cross models fit the simple liquids' shear thinning curves at densities slightly below the normal freezing density whereas a Herschel-Bulkley expression was found most suitable at densities in excess of 15% of this. Extreme shear thinning behaviour is associated with the creation of long range order within the liquid." @default.
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- W2029250855 title "Non-Newtonian behaviour of simple liquids" @default.
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