Fr. 222.00

Polymer Processing - Modeling und Simulation

English · Hardback

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Description

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This book addresses traditional polymer processing as well as the emerging technologies associated with the plastics industry in the 21st Century, and combines engineering modeling aspects with computer simulation of realistic polymer processes. This book is designed to provide a polymer processing background to engineering students and practicing engineers. This three-part textbook is written for a two-semester polymer processing series in mechanical and chemical engineering. The first and second part of the book are designed for a senior- to graduate level course, introducing polymer processing, and the third part is for a graduate course on simulation in polymer processing. Throughout the book, many applications are presented in form of examples and illustrations. These will also serve the practicing engineer as a guide when determining important parameters and factors during the design process or when optimizing a process. Examples are presented throughout the book, and problems and solutions are available.

Contents:

- Introduction
- Part I - Background
Polymer Material Science, Processing Properties, Polymer Processes
- Part II - Processing Fundamentals
Dimensional Analysis and Scaling, Transport Phenomena in Polymer Processing, Analyses Based on Analytical Solutions
- Part III- Numerical Techniques
Introduction to Numerical Analysis, Finite Differences Method, Finite Element Method, Boundary Element Method, Radial Functions Method

About the author

Tim A. Osswald, Ph.D., is Kuo K. and Cindy F. Wang Professor at the University of Wisconsin-Madison College of Engineering and Honorary Professor of Plastics Technology at the University of Erlangen-Nuremberg and the National University of Colombia. He is the author of many books and book chapters, as well as over 100 papers in the field of plastics technology.
Juan P. Hernández-Ortiz, Ph.D., is Professor of Materials and Nanotechnology and Director of the Colombia/Wisconsin One-Health Consortium – Universidad Nacional de Colombia. He is also Honorary Associate at the Biotechnology Center at the University of Wisconsin-Madison, and at the Pritzker School of Molecular Engineering at the University of Chicago.

Summary

This book addresses traditional polymer processing as well as the emerging technologies associated with the plastics industry in the 21st Century, and combines engineering modeling aspects with computer simulation of realistic polymer processes. This book is designed to provide a polymer processing background to engineering students and practicing engineers. This three-part textbook is written for a two-semester polymer processing series in mechanical and chemical engineering. The first and second part of the book are designed for a senior- to graduate level course, introducing polymer processing, and the third part is for a graduate course on simulation in polymer processing. Throughout the book, many applications are presented in form of examples and illustrations. These will also serve the practicing engineer as a guide when determining important parameters and factors during the design process or when optimizing a process. Examples are presented throughout the book, and problems and solutions are available.

Contents:

- Introduction
- Part I - Background
Polymer Material Science, Processing Properties, Polymer Processes
- Part II - Processing Fundamentals
Dimensional Analysis and Scaling, Transport Phenomena in Polymer Processing, Analyses Based on Analytical Solutions
- Part III- Numerical Techniques
Introduction to Numerical Analysis, Finite Differences Method, Finite Element Method, Boundary Element Method, Radial Functions Method

Product details

Authors Juan P. Hernandez-Ortiz, Tim A. Osswald
Publisher Hanser Fachbuchverlag
 
Languages English
Product format Hardback
Released 01.01.2006
 
EAN 9783446403819
ISBN 978-3-446-40381-9
No. of pages 606
Weight 1596 g
Illustrations 513 SW-Abb., 24 Tabellen
Subjects Natural sciences, medicine, IT, technology > Technology > Chemical engineering

Kunststoff, Prozesse, Kunststoffe und Polymere, Polymere, Verarbeitung allgemein

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