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Volume 1 presents first fundamental principles of the rheology of
polymeric fluid including kinematics and stresses of a deformable
body, the continuum theory for the viscoelasticity of flexible
homogeneous polymeric liquids, the molecular theory for the
viscoelasticity of flexible homogeneous polymeric liquids, and the
experimental methods for the measurement of the rheological
properties of poylmeric liquids. The materials presented are
intended to set a stage for the subsequent chapters by introducing
the basic concepts and principles of rheology, from both
phenomenological and molecular perspectives, ofstructurally simple
flexible and homogeneous polymeric liquids. Next, this volume
presents the rheological behavior of structurally complex polymeric
materials including miscible polymer blends, block copolymers,
liquid-crystalline polymers, thermoplastic polyurethanes,
immiscible polymer blends, perticulare-filled polymers, organoclay
nanocomposites, molten polymers with dissolved gas, and thermosts.
Volume 2 presents the fundamental principles related to polymer
processign operations including the processing of thermoplastic
polymers and thermosets. The objective of this volume is not to
provide recipies that necessarily guarantee better product quality.
Rather, emphasis is placed on presenting a fundamental approach to
effectively analyze processing operations. The specific polymer
processing operations for thermoplastics include plasticating
single-screw extrusion, morphology evolution during compounding of
polymer blends, compatibilization of immiscible polymer blends,
wire coating extrusion, fiber spinning, tubular film blowing,
coextrusion, and thermoplastic foam extrusion. The specific polymer
processing operations for thermosets include reaction injection
molding, pultrusion of fiber-reinforced thermosets, and compression
molding of thermoset composites.
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