Exact(12)
The strengthening measured in alloyed thin films can be adequately predicted in the solid solution regime only by combining solute strengthening with a grain boundary pinning model.
In the semi-dilute solution regime, the hydrophobically modified associative polymer exhibits higher viscosities when compared to the unmodified analogue.
We explore the applicability (solution regime) and the properties of the model, in particular whether it allows for a die swell.
Hence the solution regime can be systematically investigated by imposing these two additional conditions q 1 ( 0 ) = 0 and q 2 ( 1 ) = 0 instead of two dimensional parameters.
For other spinning set-ups the investigation of the solution regime requires the determination of the roots of - not only one, but - two classifying functions in a high-dimensional parameter space.
There is, however, an indirect effect, since R determines the value of the function α, and since α defines the set B δ, changes in R will alter the values of δ that determine the changes in solution regime.
Similar(48)
Note: we have discussed several solution regimes, which implies that one of them could be repeated.
Parametric continuation is performed to compute steady state solution regimes predicted by the model.
The monotonicity allowed the analytical determination of limiting hyperplanes and the numerical exploration of the different solution regimes.
The plot of the zero shear viscosity vs. c/c* distinctly separated into different solution regimes, viz.
Also, this work has filled in some of the solution regimes for an impact pair, which were missed previously in the literature.
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