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Knowledge of thermodynamics is a necessary tool for describing and
understanding the physical behavior of new polymers and polymer
blends, for instance, compatibility of components, rheological
properties, morphological features, and mechanical properties. This
book summarizes in a fairly comprehensive manner the recent
technical research accomplishments in the area of thermodynamics,
characterizations, and applications of polymer blends. In the first
chapter, an overview of thermodynamic behaviors of non-equilibrium
polymers is discussed. In the consecutive chapters, different
properties of polymer blends are discussed, including surface
tension, transition, crystallization, morphology, and flow
behaviors. Miscibility and molecular characterizations of polymer
blends are also covered in this book. Applications to various
systems are reviewed, and both experimental concerns and references
are supplied. In this time when science has such a strong tendency
for diversification, this book demonstrates the relevance of one's
own activities with neighboring branches of activities. This book
is unique in that the mathematics of the physics of polymers are
minimized in order not to discourage the interest of a junior or
senior undergraduate or new graduate student by an unnecessarily
rigorous approach. However, book aims to widen the readers' general
knowledge with a better understanding of the physics of polymers.
Applications to various systems are reviewed, and both experimental
concerns and references are supplied.
Knowledge of thermodynamics is a necessary tool for describing and
understanding the physical behavior of new polymers and polymer
blends, for instance, compatibility of components, rheological
properties, morphological features, and mechanical properties. This
book summarizes in a fairly comprehensive manner the recent
technical research accomplishments in the area of thermodynamics,
characterizations, and applications of polymer blends. In the first
chapter, an overview of thermodynamic behaviors of non-equilibrium
polymers is discussed. In the consecutive chapters, different
properties of polymer blends are discussed, including surface
tension, transition, crystallization, morphology, and flow
behaviors. Miscibility and molecular characterizations of polymer
blends are also covered in this book. Applications to various
systems are reviewed, and both experimental concerns and references
are supplied. In this time when science has such a strong tendency
for diversification, this book demonstrates the relevance of one's
own activities with neighboring branches of activities. This book
is unique in that the mathematics of the physics of polymers are
minimized in order not to discourage the interest of a junior or
senior undergraduate or new graduate student by an unnecessarily
rigorous approach. However, book aims to widen the readers' general
knowledge with a better understanding of the physics of polymers.
Applications to various systems are reviewed, and both experimental
concerns and references are supplied.
This new work, Functional Polymeric Composites: Macro to
Nanoscales, focuses on new challenges, findings, opportunities, and
applications in the area of polymer composites. The chapters,
written prominent researchers from academia, industry, and research
institutes from around the world, present contemporary research and
developments on advanced polymeric materials, including polymer
blends, polymer electrolytes, bio-based polymer, polymer
nanocomposites, etc. Several chapters also cover the applications
of the polymeric systems in current industry development and
synthesis and characterization of the products.
The combination of its unique morphology, physical properties, cost
effectiveness and environmental friendliness make natural rubber an
appealing constituent for many materials and applications. This
comprehensive two volume set covers the synthesis, characterization
and applications of natural rubber based blends, interpenetrating
polymer networks, composites and nanocomposites. Volume 1 covers
different types of natural rubber-based blends and IPNs as well as
manufacturing methods, thermo mechanical characterization
techniques, life cycle analysis and their applications. Volume 2
focuses on natural rubber-based composites and Nanocomposites
including the different types of fillers, the filler-matrix
reinforcement mechanisms, manufacturing techniques, and
applications. This is the first book to consolidate the current
state of the art information on natural rubber based materials with
contributions from established international experts in the field.
The book provides a "one stop" reference resource for
professionals, researchers, industrial practitioners, graduate
students, and senior undergraduates in the fields of polymer
science and engineering, materials science, surface science,
bioengineering and chemical engineering.
This new work, Functional Polymeric Composites: Macro to
Nanoscales, focuses on new challenges, findings, opportunities, and
applications in the area of polymer composites. The chapters,
written prominent researchers from academia, industry, and research
institutes from around the world, present contemporary research and
developments on advanced polymeric materials, including polymer
blends, polymer electrolytes, bio-based polymer, polymer
nanocomposites, etc. Several chapters also cover the applications
of the polymeric systems in current industry development and
synthesis and characterization of the products.
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