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Composite materials : concurrent engineering approach /

This book covers different aspects of concurrent engineering approaches in the development of composite products.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Sapuan, S. M. (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Kidlington, Oxford, United Kingdom : Butterworth-Heinemann is an imprint of Elsevier, 2017.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Cover; Title page; Copyright page; Dedication; Contents; About the Author; Preface; Acknowledgments; Nomenclatures; Chapter 1
  • Introduction; Background; Beyond Manufacturing Competition; Concurrent Engineering Definition; Approaches to CE Implementation; Aliases of CE; Benefits of CE; Design for the Environment/Design for�Sustainability; Why Composites?; Concurrent Engineering in Composite Materials Development; Previous Studies of Concurrent Engineering for Composites; Conceptual Design for Composites Under CE Environment; Materials Selection of Composites Under CE Environment.
  • Importance of Materials SelectionComposite Materials Selection; Design for Sustainability of Composites Under CE Environment; About This Book; References; Chapter 2
  • Concurrent Engineering, Product Design, and Development; Introduction; The Importance of Product Development; Definitions of Product Design and Development; Different Design Process Models Developed by�Design Experts; Description of Each Stage of Total Design Model; Clarifying Need; Market Investigation; Product Design Specifications; Conceptual Design; Embodiment Design; Detail Design; Manufacture.
  • The Scope of Design for CE of CompositesClassification Characteristics of Design Tasks in Composites; Origin of Task; Organization; Novelty; Production; Branch; Complexity; Goals; Conclusions; References; Chapter 3
  • Composite Materials; Introduction; History of Composites; Ancient History of Composites; History of Matrix Materials; History of Fibers; Modern History of Composites; Polymer Matrix Composites; Matrix Materials; Biodegradable Polymers; Fibers; Glass Fibers; Carbon Fibers; Aramid Fibers; Boron Fibers; Natural Fibers; Natural Fiber Composites; Advanced Composites.
  • Advantages and Disadvantages of Polymer CompositesAdvantages; Disadvantages; Applications of Polymer Composites; Automotive Industry; Aerospace Industry; Building Industry; Marine Application; Furniture Products; Sporting Goods and Leisure; Manufacturing Methods of Polymer Composite Materials; Injection Molding; Resin Transfer Molding; Hand Lay-Up; Spray-Up; Filament Winding; Compression Molding; Pultrusion; Vacuum Bag Molding/Autoclave Molding; Metal Matrix Composites; Composite Constituents; Fabrication Processes of MMC; Applications; Self-Healing MMC; Ceramic Matrix Composites.
  • Composite ConstituentsProperties of CMC; Fabrication Processes of CMC; Applications; Nanocomposites; Ceramic Matrix Nanocomposites; Metal Matrix Nanocomposites; Polymer Matrix Nanocomposites; Potentials and Advantages of Nanocomposites; Conclusions; References; Chapter 4
  • Concurrent Engineering in Design and Development of Composite Products; Introduction; Previous Work on CE in Composite Product Development; Early Work (1989-99); New Millennium Era (2000-09); Recent Work; Some Commercially Relevant Examples of Recent Development, Trend, and Advances in the Area of CE for Composites.