Analysis and Performance of Fiber Composites (ePub)
(Sprache: Englisch)
Updated and expanded coverage of the latest trends and developments in fiber composite materials, processes, and applications
Analysis and Performance of Fiber Composites, Fourth Edition features updated and expanded coverage of all technical aspects of...
Analysis and Performance of Fiber Composites, Fourth Edition features updated and expanded coverage of all technical aspects of...
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Updated and expanded coverage of the latest trends and developments in fiber composite materials, processes, and applications
Analysis and Performance of Fiber Composites, Fourth Edition features updated and expanded coverage of all technical aspects of fiber composites, including the latest trends and developments in materials, manufacturing processes, and materials applications, as well as the latest experimental characterization methods.
Fiber reinforced composite materials have become a fundamental part of modern product manufacturing. Routinely used in such high-tech fields as electronics, automobiles, aircraft, and space vehicles, they are also essential to everyday staples of modern life, such as containers, piping, and appliances. Little wonder, when one considers their ease of fabrication, outstanding mechanical properties, design versatility, light weight, corrosion and impact resistance, and excellent fatigue strength. This Fourth Edition of the classic reference the standard text for composite materials courses, worldwide offers an unrivalled review of such an important class of engineering materials.
Still the most comprehensive, up-to-date treatment of the mechanics, materials, performance, analysis, fabrication, and characterization of fiber composite materials available, Analysis and Performance of Fiber Composites, Fourth Edition features:
* Expanded coverage of materials and manufacturing, with additional information on materials, processes, and material applications
* Updated and expanded information on experimental characterization methods including many industry specific tests
* Discussions of damage identification techniques using nondestructive evaluation (NDE)
* Coverage of the influence of moisture on performance of polymer matrix composites, stress corrosion of glass fibers and glass reinforced plastics, and damage due to low-velocity impact
* New end-of-chapter problems and exercises with solutions found on an accompanying website
* Computer analysis of laminates
No other reference provides such exhaustive coverage of fiber composites with such clarity and depth. Analysis and Performance of Fiber Composites, Fourth Edition is, without a doubt, an indispensable resource for practicing engineers, as well as students of mechanics, mechanical engineering, and aerospace engineering.
Visit the Companion Website at: https://www.wiley.com/WileyCDA/Section/id-830336.html
Analysis and Performance of Fiber Composites, Fourth Edition features updated and expanded coverage of all technical aspects of fiber composites, including the latest trends and developments in materials, manufacturing processes, and materials applications, as well as the latest experimental characterization methods.
Fiber reinforced composite materials have become a fundamental part of modern product manufacturing. Routinely used in such high-tech fields as electronics, automobiles, aircraft, and space vehicles, they are also essential to everyday staples of modern life, such as containers, piping, and appliances. Little wonder, when one considers their ease of fabrication, outstanding mechanical properties, design versatility, light weight, corrosion and impact resistance, and excellent fatigue strength. This Fourth Edition of the classic reference the standard text for composite materials courses, worldwide offers an unrivalled review of such an important class of engineering materials.
Still the most comprehensive, up-to-date treatment of the mechanics, materials, performance, analysis, fabrication, and characterization of fiber composite materials available, Analysis and Performance of Fiber Composites, Fourth Edition features:
* Expanded coverage of materials and manufacturing, with additional information on materials, processes, and material applications
* Updated and expanded information on experimental characterization methods including many industry specific tests
* Discussions of damage identification techniques using nondestructive evaluation (NDE)
* Coverage of the influence of moisture on performance of polymer matrix composites, stress corrosion of glass fibers and glass reinforced plastics, and damage due to low-velocity impact
* New end-of-chapter problems and exercises with solutions found on an accompanying website
* Computer analysis of laminates
No other reference provides such exhaustive coverage of fiber composites with such clarity and depth. Analysis and Performance of Fiber Composites, Fourth Edition is, without a doubt, an indispensable resource for practicing engineers, as well as students of mechanics, mechanical engineering, and aerospace engineering.
Visit the Companion Website at: https://www.wiley.com/WileyCDA/Section/id-830336.html
Autoren-Porträt von Bhagwan D. Agarwal, Lawrence J. Broutman, K. Chandrashekhara
BHAGWAN D. AGARWAL, PHD, is a former Vice President of engineering services at Bodycote Polymer--Broutman Laboratory, and Professor of Mechanical Engineering and Dean of Research and Development at the Indian Institute of Technology, Kanpur.LAWRENCE J. BROUTMAN, PHD, is an independent consultant and founder of L.J. Broutman & Associates.
K. CHANDRASHEKHARA, PHD, is Professor of Mechanical and Aerospace Engineering and Director of the Composite Manufacturing Laboratory at the Missouri University of Science and Technology.
Bibliographische Angaben
- Autoren: Bhagwan D. Agarwal , Lawrence J. Broutman , K. Chandrashekhara
- 2017, 4. Auflage, 576 Seiten, Englisch
- Verlag: John Wiley & Sons
- ISBN-10: 1119389976
- ISBN-13: 9781119389972
- Erscheinungsdatum: 26.10.2017
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eBook Informationen
- Dateiformat: ePub
- Grösse: 28 MB
- Mit Kopierschutz
Sprache:
Englisch
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