Plastics, rubber, and their composites are increasingly finding new applications in engineering, both as replacements for traditional materials and in completely new developments. Automobile, aerospace, building, lectronic, and marine engineering all show the influenceof the plastics revolution. The modern engineer needs a good working knowledge of both polymer engineering and metallurgy if he is to be fully effective. This book is aimed at undergraduate and postgraduate students of engineering and materials science. It shows first why plastics and rubbershave such distinctive properties, and how they are affected by temperature, strain rate, and other factors. The second half of the book concentrates on the ways in which these properties can be exploited to produce functional components that fulfil the demands placed upon them in the most effective manner. The engineering principles are carefully presented, and illustrated by well-chosen model calculations and examples. Readership: first-degree and postgraduate students and teachers of mechanical, chemical, and civil engineering, and materials science; practising engineers on mid-career training courses in plastics, rubbers, or composite materials.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Polymers have an important role in manufacturing and their engineering properties form an important part of any course in engineering. This revised and updated second edition develops the principles of polymer engineering from the underlying materials science, and is aimed at undergraduate and postgraduate students in engineering and materials science. The opening chapters explain why plastics and rubbers have such distinctive properties and how these are affected by temperature, strain rate, and other factors. The book then explores how these properties can be exploited within these property constraints to produce functional components. Major changes for this second edition include an introductory chapter on the environmental impact of polymers, emphasizing the important issues, and substantially revised sections on fracture testing for toughened polymers, yield, processing, heat transfer, and polymer forming.
The book is very well organised and clearly presented. It is rich in clear descriptions of principles behind the complex theories and models used today. The self-contained style, with frequent examples and end-of-chapter problems, makes it an ideal textbook for teachers, students, research scientists and engineers who want to expand their knowledge of the subject....It is undoubtedly a valuable book for people involved in polmers and engineering.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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