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Microstructural Design of Fiber Composites

Hardback

Main Details

Title Microstructural Design of Fiber Composites
Authors and Contributors      By (author) Tsu-Wei Chou
SeriesCambridge Solid State Science Series
Physical Properties
Format:Hardback
Pages:592
Dimensions(mm): Height 224,Width 146
Category/GenreMaterials science
ISBN/Barcode 9780521354820
ClassificationsDewey:620.118
Audience
Professional & Vocational
Illustrations 14 Tables, unspecified; 11 Halftones, unspecified; 279 Line drawings, unspecified; 14 Tables, unspecified; 11 Halftones, unspecified; 279 Line drawings, unspecified

Publishing Details

Publisher Cambridge University Press
Imprint Cambridge University Press
Publication Date 16 April 1992
Publication Country United Kingdom

Description

This book addresses the issue of designing the microstructure of fiber composite materials in order to obtain optimum performance. Besides the systematic treatment of conventional continuous and discontinuous fiber composites, the book also presents the state-of-the-art of the development of textile structural composites as well as the nonlinear elastic finite deformation theory of flexible composites. The author's experience during twenty years of research and teaching on composite materials is reflected in the broad spectrum of topics covered, including laminated composites, statistical strength theories of continuous fiber composites, short fiber composites, hybrid composites, two- and three-dimensional textile structural composites and flexible composites. This book provides the first comprehensive analysis and modeling of the thermo-mechanical behaviour of fiber composites with these distinct micro-structures. Overall, the inter-relationships among the processing, microstructures and properties of these materials are emphasized throughout the book. The book is intended as a text for graduate or advanced undergraduate students, but will also be an excellent reference for all materials scientists and engineers who are researching or working with these materials.