Fr. 139.00

Materials Science of Polymers for Engineers

Anglais · Livre Relié

Expédition généralement dans un délai de 1 à 2 semaines

Description

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This unified approach to polymer materials science is divided in three major sections: - Basic Principles - covering historical background, basic material properties, molecular structure, and thermal properties of polymers.- Influence of Processing on Properties - tying processing and design by discussing rheology of polymer melts, mixing and processing, the development of anisotropy, and solidification processes.- Engineering Design Properties - covering the different properties that need to be considered when designing a polymer component - from mechanical properties to failure mechanisms, electrical properties, acoustic properties, and permeability of polymers.A new chapter introducing polymers from a historical perspective not only makes the topic less dry, but also sheds light on the role polymers played, for better and worse, in shaping today's industrial world. The first edition was praised for the vast number of graphs and data that can be used as a reference. A new table in the appendix containing material property graphs for several polymers further strengthens this attribute. The most important change made to this edition is the introduction of real-world examples and a variety of problems at the end of each chapter.

Table des matières

From the contents:
- Introduction to Polymers
- Historical Background
- Structure of Polymers
- Thermal Properties of Polymers
- Rheology of Polymer Melts
- Introduction to Processing
- Anisotropy Development During Processing
- Solidification of Polymers
- Mechanical Behavior of Polymers
- Failure and Damage of Polymers
- Electrical Properties of Polymers
- Optical Properties of Polymers
- Permeability Properties of Polymers
- Acoustic Properties of Polymers

A propos de l'auteur

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.
Prof. Dr.-Ing. Georg Menges ist emeritierter Professor an der RWTH Aachen.

Résumé

This unified approach to polymer materials science is divided in three major sections:
- Basic Principles - covering historical background, basic material properties, molecular structure, and thermal properties of polymers.
- Influence of Processing on Properties - tying processing and design by discussing rheology of polymer melts, mixing and processing, the development of anisotropy, and solidification processes.
- Engineering Design Properties - covering the different properties that need to be considered when designing a polymer component - from mechanical properties to failure mechanisms, electrical properties, acoustic properties, and permeability of polymers.

A new chapter introducing polymers from a historical perspective not only makes the topic less dry, but also sheds light on the role polymers played, for better and worse, in shaping today's industrial world.

The first edition was praised for the vast number of graphs and data that can be used as a reference. A new table in the appendix containing material property graphs for several polymers further strengthens this attribute.

The most important change made to this edition is the introduction of real-world examples and a variety of problems at the end of each chapter.

Texte suppl.

"Anspruchsvolles Grundwissen in Englisch." Johannes Kunz, Kunststoffe, März 2013

Commentaire

"Anspruchsvolles Grundwissen in Englisch." Johannes Kunz, Kunststoffe, März 2013

Détails du produit

Auteurs Georg Menges, Tim Osswald, Tim A Osswald, Tim A. Osswald
Edition Hanser Fachbuchverlag
 
Langues Anglais
Format d'édition Livre Relié
Sortie 01.09.2012
 
EAN 9781569905142
ISBN 978-1-56990-514-2
Pages 595
Dimensions 174 mm x 242 mm x 33 mm
Poids 1140 g
Illustrations w. num. col. figs.
Catégories Sciences naturelles, médecine, informatique, technique > Technique > Technique chimique

Kunststoffe, Werkstoffkunde, Kunststoffe und Polymere, Polymere, Werkstoffe, Werkstofftechnik, Kunststoffe allgemein, rheology, Chemie/Physik der Kunststoffe, polymers

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