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This book, cohesively written by an expert author with supreme breadth and depth of perspective on polyurethanes, provides a comprehensive overview of all aspects of the science and technology on one of the most commonly produced plastics.* Covers the applications, manufacture, and markets for polyurethanes, and discusses analytical methods, reaction mechanisms, morphology, and synthetic routes* Provides an up-to-date view of the current markets and trend analysis based on patent activity and updates chapters to include new research* Includes two new chapters on PU recycling and PU hybrids, covering the opportunities and challenges in both
Employing biodegradable polymers to create nanocomposites addresses many current environmental concerns, such as waste-disposal problems associated with traditional plastics and the potential to cut carbon emissions and reduce CO 2 quantities.
This book highlights the importance of quality control for injection molding ? the most commonly used plastics manufacturing method. It provides the guidance and information to apply quality assurance methods so that plastic parts are produced ?right the first time? and through all manufacturing operations.
This book comprehensively summarizes and collects many technical research accomplishments conducted on polyolefin blends. It serves as a "one stop" reference resource for important research accomplishments in the area of polyolefin blends.
* Helps readers understand the basics of PVC formulation, suitable starting formulations for compounds, and new compounding ingredients. * Provides 'typical' or 'starting point' recipes for significant applications along with advice for modifications to enhance one property or another.
This book comprehensively summarizes and collects many technical research accomplishments conducted on polyolefin composites. It serves as a "one stop" reference resource for important research accomplishments in the area of polyolefin composites.
Industrial engineers know microcellular injection molding commercially known as the MuCell process can enhance product design, improve processing efficiency, and reduce product costs.
* Comprehensive reference covering the properties, synthesis and applications of hyperbranched polymers. * Helps the reader gain a better understanding of irregular branching aiding in the design of highly functional materials.
Including chemical, synthetic, and cross-disciplinary approaches; this book includes the necessary techniques and technologies to help readers better understand polymers for polymer electrolyte membrane (PEM) fuel cells.
Focusing on a variety of coatings, this book provides detailed discussion on preparation, novel techniques, recent developments, and design theories to present the advantages of each function and provide the tools for better product performance and properties.
POLY(LACTIC ACID)The second edition of a key reference, fully updated to reflect new research and applicationsPoly(lactic acid)s - PLAs, biodegradable polymers derived from lactic acid, have become vital components of a sustainable society. Eco-friendly PLA polymers are used in numerous industrial applications ranging from packaging to medical implants and to wastewater treatment. The global PLA market is predicted to expand significantly over the next decade due to increasing demand for compostable and recyclable materials produced from renewable resources.Poly(lactic acid) Synthesis, Structures, Properties, Processing, Applications, and End of Life provides comprehensive coverage of the basic chemistry, production, and industrial use of PLA. Contributions from an international panel of experts review specific processing methods, characterization techniques, and various applications in medicine, textiles, packaging, and environmental engineering. Now in its second edition, this fully up-to-date volume features new and revised chapters on 3D printing, the mechanical and chemical recycling of PLA, PLA stereocomplex crystals, PLA composites, the environmental footprint of PLA, and more.* Highlights the biodegradability, recycling, and sustainability benefits of PLA* Describes processing and conversion technologies for PLA, such as injection molding, extrusion, blending, and thermoforming* Covers various aspects of lactic acid/lactide monomers, including physicochemical properties and production* Examines different condensation reactions and modification strategies for enhanced polymerization of PLA* Discusses the thermal, rheological, and mechanical properties of PLA* Addresses degradation and environmental issues of PLA, including photodegradation, radiolysis, hydrolytic degradation, biodegradation, and life cycle assessmentPoly(lactic acid) Synthesis, Structures, Properties, Processing, Applications, and End of Life, Second Edition remains essential reading for polymer engineers, materials scientists, polymer chemists, chemical engineers, industry professionals using PLA, and scientists and advanced student engineers interested in biodegradable plastics.
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