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Sustainable Polylactide-Based Composites integrates fundamental
knowledge pertaining to manufacturing and characterization of
polymer composites with a thorough and critical overview of the
state-of-the-art in PLA-based composites, including significant
past and recent advances. The book begins with insights into the
basics of polymer composites, with special reference to sustainable
composites, as well as fundamental knowledge related to PLA. This
is followed by chapters on manufacturing methods, morphological
characterization techniques, and the mechanical models used for
polymer composites. A comprehensive overview of the
state-of-the-art in PLA-based sustainable composites of all
extensively used fillers is then presented. After providing
fundamental knowledge related to PLA and polymer composites,
including structure-property-processing relationship, the book
focuses on recent research efforts and key research challenges in
the development of PLA-based composites, as well as lifecycle
assessment and recycling.
Sustainable Polylactide-Based Blends provides a critical overview
of the state-of-the-art in polylactide (PLA)-based blends,
addressing the latest advances, innovative processing techniques
and fundamental issues that persist in the field. Sections cover
the fundamentals of sustainable polymeric materials, polylactide
and polymer blends, current and upcoming processing technologies,
structure and morphology characterization techniques for PLA and
PLA-based blends, and the processing, morphology development, and
properties of polylactide-based blends. Final chapters focus on
current and future applications, market potential, key challenges
and future outlooks. Throughout the book, theoretical modeling of
immiscible polymer blends helps to establish structure-property
relationships in various PLA-based polymer blends. With in-depth
coverage of fundamentals and processing techniques, the book aims
to support the selection of each processing method, along with an
understanding of surface chemistry to achieve improved
compatibility between phases.
Foamability of Thermoplastic Polymeric Materials presents a
cutting-edge approach to thermoplastic polymeric foams, drawing on
the latest research and guiding the reader through the fundamental
science, foamability, structure-property-processing relationship,
multi-phase polymeric materials, degradation characteristics of
biodegradable foams and advanced applications. Sections provide
detailed information on foam manufacturing technologies and the
fundamental science behind foaming, present insights on the factors
affecting foamability, cover ways of enhancing the foamability of
various polymeric materials, with special focus on multi-phase
systems, discuss the degradation of biodegradable foams and special
morphology development for scaffolds, packaging, acoustic and
super-insulation applications, as well as cell seeding studies in
scaffolds. Each application has specific requirements in terms of
desired properties. This in-depth coverage and analysis helps those
looking to move forward with microcellular processing and polymer
foaming. This is an ideal resource for researchers, advanced
students and professionals interested in the microcellular
processing of polymeric materials in the areas of polymer foaming,
polymer processing, plastics engineering and materials science.
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