Polymeric Compatibilizers
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Polymeric Compatibilizers
Author | : Sudhin Datta,David J. Lohse |
Publsiher | : Hanser Gardner Publications |
Total Pages | : 542 |
Release | : 1996-01-01 |
Genre | : Technology & Engineering |
ISBN | : 1569901945 |
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Physical and chemical bases of compatibilizers and the ways they have been synthesized are described. The book also surveys the application of compatibilization to many blends.Synthetic chemists will use it to define the kind of polymers needed to produce high quality compatibilizers. Materials scientists will use it to design the best composition for a wide variety of applications.
Concise Polymeric Materials Encyclopedia
Author | : Joseph C. Salamone |
Publsiher | : CRC Press |
Total Pages | : 1782 |
Release | : 1998-08-28 |
Genre | : Technology & Engineering |
ISBN | : 084932226X |
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Concise Polymeric Materials Encyclopedia culls the most used, widely applicable articles from the Polymeric Materials Encyclopedia - more than 1,100 - and presents them to you in a condensed, well-ordered format. Featuring contributions from more than 1,800 scientists from all over the world, the book discusses a vast array of subjects related to the: synthesis, properties, and applications of polymeric materials development of modern catalysts in preparing new or modified polymers modification of existing polymers by chemical and physical processes biologically oriented polymers This comprehensive, easy-to-use resource on modern polymeric materials serves as an invaluable addition to reference collections in the polymer field.
Compatibilization of Polymer Blends
Author | : Ajitha A. R,Sabu Thomas |
Publsiher | : Elsevier |
Total Pages | : 640 |
Release | : 2019-10-10 |
Genre | : Technology & Engineering |
ISBN | : 9780128162880 |
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Compatibilization of Polymer Blends: Micro and Nano Scale Phase Morphologies, Interphase Characterization and Properties offers a comprehensive approach to the use of compatibilizers in polymer blends, examining both fundamental and advanced knowledge in the field. The book begins by introducing polymer blends, describing thermodynamics, miscibility, and phase separation, and explaining the main concepts of compatibilization. Other sections cover theoretical approaches for nearly compatible blends, incompatible blends, nanofillers, physical compatibilization, reactive compatibilization, morphological and structural characterization, and physico-mechanical characterization. Finally, key application areas are covered, including biomedical applications, packaging and automobile engineering. While this book will be a highly valuable reference source for academics, researchers and postgraduate students interested in polymer blends, it will also be ideal for anyone involved in the fields of polymer science, polymer chemistry, polymer physics, materials science, scientists, R&D professionals, and engineers in involved in the development or engineering of polymer products. Offers detailed and systematic coverage of essential and advanced topics relating to the compatibilization of polymer blends Presents a critical analysis of the effect of compatibilization on morphology and thermal, mechanical, electrical and viscoelastic properties of polymer blends Draws on novel studies and state-of-the-art research, discussing the latest issues and developments
Nanostructured Polymer Blends
Author | : Sabu Thomas,Robert Shanks,Sarath Chandran |
Publsiher | : William Andrew |
Total Pages | : 570 |
Release | : 2013-11-28 |
Genre | : Technology & Engineering |
ISBN | : 9781455731602 |
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Over 30% of commercial polymers are blends or alloys or one kind or another. Nanostructured blends offer the scientist or plastics engineer a new range of possibilities with characteristics including thermodynamic stablility; the potential to improve material transparency, creep and solvent resistance; the potential to simultaneously increase tensile strength and ductility; superior rheological properties; and relatively low cost. Nanostructured Polymer Blends opens up immense structural possibilities via chemical and mechanical modifications that generate novel properties and functions and high-performance characteristics at a low cost. The emerging applications of these new materials cover a wide range of industry sectors, encompassing the coatings and adhesives industry, electronics, energy (photovoltaics), aerospace and medical devices (where polymer blends provide innovations in biocompatible materials). This book explains the science of nanostructure formation and the nature of interphase formations, demystifies the design of nanostructured blends to achieve specific properties, and introduces the applications for this important new class of nanomaterial. All the key topics related to recent advances in blends are covered: IPNs, phase morphologies, composites and nanocomposites, nanostructure formation, the chemistry and structure of additives, etc. Introduces the science and technology of nanostructured polymer blends – and the procedures involved in melt blending and chemical blending to produce new materials with specific performance characteristics Unlocks the potential of nanostructured polymer blends for applications across sectors, including electronics, energy/photovoltaics, aerospace/automotive, and medical devices (biocompatible polymers) Explains the performance benefits in areas including rheological properties, thermodynamic stablility, material transparency, solvent resistance, etc.
Nanostructured Polymer Blends
Author | : Emmanuel Rotimi Sadiku,Elijah Sobalaje Ogunniran |
Publsiher | : Elsevier Inc. Chapters |
Total Pages | : 576 |
Release | : 2013-11-28 |
Genre | : Technology & Engineering |
ISBN | : 9780128090817 |
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Great progress has been made in the science and technology of polymer-based nanomaterials over the last decade. Nanostructured polymer systems have attracted much scientific and applied research interest. The last two decades have witnessed significant advances in polymer science and technology generally, but more so for polymer blends. The idea of blending two (or more) polymers, especially immiscible blends, has come with a lot of challenges. Achieving this has brought to the fore the art and science (and engineering) of compatibilization. During the last few decades, the addition of nanoparticles, nanowires, nanotubes, and so on has advanced even further the creation of blends, alloys, and composites with different polymers. In making these blends, intermediaries such as compatibilizers, coupling agents, and other additives are often employed to bring about blends that are satisfactory for the purposes they are intended to serve. Nanostructured polymer blends formation has strongly improved the properties and structural integrities of polymer blends, by employing compatibilization as a tool to achieve such properties and structural integrities of polymer blends. Reinforcing compatibilized polymer blends with nanosize additives has further strengthened the properties and integrities of polymer blends, alloys, and composites.
Reactive Polymers Fundamentals and Applications
Author | : Johannes Karl Fink |
Publsiher | : William Andrew |
Total Pages | : 712 |
Release | : 2017-10-31 |
Genre | : Technology & Engineering |
ISBN | : 9780128145104 |
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Reactive Polymers: Fundamentals and Applications: A Concise Guide to Industrial Polymers, Third Edition introduces engineers and scientists to a range of reactive polymers and then details their applications and performance benefits. Basic principles and industrial processes are described for each class of reactive resin (thermoset), as well as additives, the curing process, applications and uses. The initial chapters are devoted to individual resin types (e.g., epoxides, cyanacrylates), followed by more general chapters on topics such as reactive extrusion and dental applications. Injection molding of reactive polymers, radiation curing, thermosetting elastomers, and reactive extrusion equipment are covered as well. The use of reactive polymers enables manufacturers to make chemical changes at a late stage in the production process, which, in turn, cause changes in performance and properties. Material selection and control of the reaction are essential to achieve optimal performance. Material new to this edition includes the most recent developments, applications and commercial products for each chemical class of thermosets, as well as sections on fabrication methods, reactive biopolymers, recycling of reactive polymers and case studies. Covers the basics and most recent developments, including reactive biopolymers, recycling of reactive polymers, nanocomposites and fluorosilicones Offers an indispensable guide for engineers and advanced students alike Provides extensive literature and patent review Reflects a thorough review of all literature published in this area since 2014 Features revised and updated chapters to reflect the latest research in reactive polymers
Starch Based Polymeric Materials and Nanocomposites
Author | : Jasim Ahmed,Brijesh K. Tiwari,Syed H. Imam,M.A. Rao |
Publsiher | : CRC Press |
Total Pages | : 416 |
Release | : 2012-04-04 |
Genre | : Technology & Engineering |
ISBN | : 9781439851173 |
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In recent years, much attention has been focused on biodegradable polymers from renewable resources. Due to its availability and low cost, starch is a promising candidate among biopolymers for use in biodegradable packaging materials and for other purposes. Starch-Based Polymeric Materials and Nanocomposites: Chemistry, Processing, and Applications
Frontiers in the Science and Technology of Polymer Recycling
Author | : Güneri Akovali,Carlos A. Bernardo,Jacob Leidner,L.A. Utracki,Marino Xanthos |
Publsiher | : Springer Science & Business Media |
Total Pages | : 477 |
Release | : 2013-03-09 |
Genre | : Technology & Engineering |
ISBN | : 9789401716260 |
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Polymers, main components of plastics and rubbers, are being discarded in increasing quantities. But this waste can also be considered as `plastic gold'. Public concern, coupled with the inherent value of the material, means that recycling is imperative. The present book presents a survey of current knowledge in the form of case studies, including current legal and educational issues. Topics covered also include regulation and practice in NATO countries, the economics of recycling, the reprocessing of single polymers and mixtures, and future prospects and strategies. Audience: Vital reading for all polymer scientists, technicians and engineers.