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Polymer Rheology is a fundamental discipline underlying modern polymer processing. The term rheology could be generally defined as the science of deformation and flow for non-traditional materials that display a nonlinear combination of viscous, elastic and plastic effects, such as polymers, food stuffs, lubricating greases etc. The rheology of polymeric liquids is the most complicated part of general rheology. As any scientific discipline it consists of coupled theoretical and experimental parts. The most difficult part for the first studies of polymer rheology is the theory. This textbook attempts to overcome this difficulty and provide the readers with a balanced knowledge of modern types of continuum theories, experiments and some applications.
Filling a gap in the literature and all set to become the standard
in this field, this monograph begins with a look at computational
viscoelastic fluid mechanics and studies of turbulent flows of
dilute polymer solutions. It then goes on discuss simulations of
nanocomposites, polymerization kinetics, computational approaches
for polymers and modeling polyelectrolytes. Further sections deal
with tire optimization, irreversible phenomena in polymers, the
hydrodynamics of artificial and bacterial flagella as well as
modeling and simulation in liquid crystals.
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