Plastics Design Library: Manufacturing and Novel Applications of Multilayer Polymer Films by Michael Ponting and Deepak Langhe (2016, Hardcover)

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About this product

Product Identifiers

PublisherElsevier Science & Technology Books
ISBN-100323371256
ISBN-139780323371254
eBay Product ID (ePID)219238571

Product Key Features

Number of Pages250 Pages
Publication NameManufacturing and Novel Applications of Multilayer Polymer Films
LanguageEnglish
SubjectTextiles & Polymers, Materials Science / General, Materials Science / Thin Films, Surfaces & Interfaces
Publication Year2016
TypeTextbook
Subject AreaTechnology & Engineering
AuthorMichael Ponting, Deepak Langhe
SeriesPlastics Design Library
FormatHardcover

Dimensions

Item Length9 in
Item Width6 in

Additional Product Features

Intended AudienceScholarly & Professional
Dewey Edition23
Dewey Decimal621.38152
Table Of ContentIntroduction of Multilayered Films Multilayer coextrusion processing Confined structures in multilayered films Coextruded films in optical applications Novel multilayered structures Dielectric Energy storage films Layered Films for packaging applicationsOriented multilayered films Future Trends
SynopsisManufacturing and Novel Applications of Multilayer Polymer Films discusses the advancements in multilayer technology, including its capability to produce hundreds of layers in a single film by a melt coextrusion process. These engineered films can have significantly enhanced performance properties, allowing films to be made thinner, stronger, and with better sealing properties. As recent developments in feedblocks and materials have opened up a range of new possibilities, this book discusses different feedblocks, and viscosity and material considerations. It is the first comprehensive summary of the latest technology in multilayer film processing and related applications, and is written from a practical perspective, translating research into commercial production and real world products. The book provides fundamental knowledge on microlayer coextrusion processing technology, how to fabricate such structures, structure and properties of such microlayers, and potential applications, thus helping research scientists and engineers develop products which not only fulfill their primary function, but can also be manufactured reliably, safely, and economically., Manufacturing and Novel Applications of Multilayer Polymer Films discusses the advancements in multilayer technology, including its capability to produce hundreds of layers in a single film by a melt coextrusion process. These engineered films can have significantly enhanced performance properties, allowing films to be made thinner, stronger, and with better sealing properties. As recent developments in feedblocks and materials have opened up a range of new possibilities, this book discusses different feedblocks, and viscosity and material considerations. It is the first comprehensive summary of the latest technology in multilayer film processing and related applications, and is written from a practical perspective, translating research into commercial production and real world products. The book provides fundamental knowledge on microlayer coextrusion processing technology, how to fabricate such structures, structure and properties of such microlayers, and potential applications, thus helping research scientists and engineers develop products which not only fulfill their primary function, but can also be manufactured reliably, safely, and economically. Provides a fundamental knowledge of microlayer coextrusion processing, including how to fabricate microlayer structures, the properties of microlayers, and potential applications, including optics, polymer film capacitors, and semiconductors Includes an in-depth analysis of all technologies used for producing multilayered films and structures by coextrusion processing Thoroughly assesses potential future trends in multilayer coextrusion technology, thus enabling engineers and scientists to stay ahead of the curve in this rapidly advancing area
LC Classification NumberQC176.9.M84
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