Principles of Polymer Systems
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Principles of Polymer Systems

Principles of Polymer Systems


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About the Book

A classic text in the field of chemical engineering, this revised sixth edition offers a comprehensive exploration of polymers at a level geared toward upper-level undergraduates and beginning graduate students. It contains more theoretical background for some of the fundamental concepts pertaining to polymer structure and behavior, while also providing an up-to-date discussion of the latest developments in polymerization systems. New problems have been added to several of the chapters, and a solutions manual is available upon qualifying course adoption.

Table of Contents:
Introduction. Basic Structures of Polymers. Physical States and Transitions. Polymer Formation. Polymerization Processes. Molecular Weight of Polymers. Viscous Flow. Rheometry and Viscoelastic Fluid Flow. Mechanical Properties at Small Deformations. Ultimate Properties. Some General Properties of Polymer Systems. Degradation and Stabilization of Polymer Systems. Fabrication Processes. Fabrication Processes: Extrusion and Molding. Polymers from Renewable Resources and Recycling of Polymers. Carbon Chain Polymers. Heterochain Polymers. Analysis and Identification of Polymers. Appendices. Index.

About the Author :
Ferdinand Rodriguez is professor emeritus of chemical engineering at Cornell University, Ithaca, New York. He was the author of the first edition of this textbook. His research in the field of polymers resulted in over 150 journal articles, while he was on the Cornell faculty. Many of these were presented at meetings of the American Chemical Society, the American Institute of Chemical Engineers, and the Society of Plastics Engineers. In retirement he remains active in Cleveland chapters of these organizations. Claude Cohen is the Fred H. Rhodes professor of engineering at Cornell University. His research interests focus on the structure-property relationships of elastomers and the testing of theories of rubber elasticity and fracture. Previous research efforts were devoted to the study of suspensions and their applications. He was a co-principal investigator of the Cornell Injection Molding Program initiated under a grant from the National Science Foundation (NSF) and supported by an industrial consortium until 2000. Christopher K. Ober is the Francis Bard professor of materials engineering and has served as chair of the department of materials science and engineering. More recently he has been associate dean of engineering for research and graduate studies and the interim dean of engineering at Cornell. He has pioneered new materials for photolithography and studies the biology materials interface. An early contributor to the investigation of self-organizing systems, he studies liquid crystals and block copolymers. More recently he has begun to study nanoparticle materials. Lynden A. Archer is a professor of chemical engineering at Cornell University and the William C. Hooey director of the School of Chemical and Bimolecular Engineering Ithaca, NY. His research focuses on transport properties of polymers and polymer-particle hybrids and their applications for electrochemical energy storage.


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Product Details
  • ISBN-13: 9781482223798
  • Publisher: Taylor & Francis Ltd
  • Publisher Imprint: CRC Press
  • Language: English
  • ISBN-10: 1482223791
  • Publisher Date: 09 Dec 2014
  • Binding: Digital (delivered electronically)


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