
Textile Geometrical Reinforcements for Structural Composites
Woodhead Publishing
Published on 1. June 2023
Book
Paperback/Softback
324 pages
978-0-323-98821-6 (ISBN)
Description
Textile Geometrical Reinforcements for Structural Composites details all types of structures for load bearing structural composite applications, including characterization and manufacturing methods.
Unlike conventional composite materials, geometrically oriented textile structures (e.g. woven, knitted and braided constructions) can be designed and developed for load bearing in a particular direction. Their properties can be enhanced by modifying the geometry and material composition. This comprehensive cutting-edge book explains how to achieve these materials with superior mechanical properties in a cost-effective way. Addressing 2D, 3D, and multiaxial woven, knitted, and braided structures, the full range of materials are covered in the context of their load bearing structural composite applications. Methods of characterizing woven, knitted and braided fabric reinforced composites are compared, and impregnation methods using thermoplastic and thermoset resins are described. Potential future directions for research in this field are also explored.
Unlike conventional composite materials, geometrically oriented textile structures (e.g. woven, knitted and braided constructions) can be designed and developed for load bearing in a particular direction. Their properties can be enhanced by modifying the geometry and material composition. This comprehensive cutting-edge book explains how to achieve these materials with superior mechanical properties in a cost-effective way. Addressing 2D, 3D, and multiaxial woven, knitted, and braided structures, the full range of materials are covered in the context of their load bearing structural composite applications. Methods of characterizing woven, knitted and braided fabric reinforced composites are compared, and impregnation methods using thermoplastic and thermoset resins are described. Potential future directions for research in this field are also explored.
More details
Series
Language
English
Place of publication
United States
Publishing group
Elsevier Science Publishing Co Inc
Target group
Professional and scholarly
Product notice
Paperback (trade)
Unsewn / adhesive bound
Illustrations
100 illustrations (50 in full color); Illustrations, unspecified
Dimensions
Height: 229 mm
Width: 152 mm
ISBN-13
978-0-323-98821-6 (9780323988216)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Dr. Eng. Hafsa Jamshaid C Text FTI is Director of Graduate studies at National Textile University, Faisalabad, Pakistan. She is an experienced textile professional in the field of weaving, and knitting technologies for technical fabrics and composites. She has authored 2 books, 15 book chapters, and 75 scientific articles. She has been awarded Fellowship from Textile Institute, Manchester, United Kingdom. Rajesh Mishra is Professor at the Department of Material Science and Manufacturing Technology at Czech University of Life Sciences Prague, Czech Republic. He is the author of more than 180 SCI referred articles, 30 book chapters, and is the coordinator of several multinational research projects. His research interests include textile structural composites, nanocomposites, and biomaterial engineering of fibrous structures.
Author
Director Graduate studies, National Textile University, Faisalabad, Pakistan
Professor, Department of Material Science and Manufacturing Technology, Czech University of Life Sciences Prague, Czech Republic
Content
1. Introduction 2. Classification of Geometrically Oriented Textile Reinforcements 3. Methods of Textile Structure Reinforced Composite Manufacturing 4. Characterization of Performance in Textile Structural Composites 5. Application of Geometrically Oriented Textile Structural Composites 6. Techno-economic Feasibility and Cost Analysis of Structural Composites