Stability and Vibrations of Thin-Walled Composite Structures (ePub)
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Stability and Vibrations of Thin-Walled Composite Structures presents engineering and academic knowledge on the stability (buckling and post buckling) and vibrations of thin walled composite structures like columns, plates, and stringer stiffened plates and shells, which form the basic structures of the aeronautical and space sectors.
Currently, this knowledge is dispersed in several books and manuscripts, covering all aspects of composite materials. The book enables both engineers and academics to locate valuable, up-to-date knowledge on buckling and vibrations, be it analytical or experimental, and use it for calculations or comparisons. The book is also useful as a textbook for advanced-level graduate courses.
- Presents a unified, systematic, detailed and comprehensive overview of the topic
- Contains contributions from leading experts in the field
- Includes a dedicated section on testing and experimental results
He has been at Technion since 1987, and currently is the head of the Aerospace Structures Laboratory. He possesses strong academic and professional experience, having also spent three years in industry and has also served as a Guest Professor at ETH Zurich Institut fur Leichtbau und Seilbahntechnik, Switzerland.
Prof. Haim Abramovich has published and presented extensively, contributing more than 100 international refereed papers in high-impact journals. His main fields of interest are static and dynamic stability of thin walled structures, piezoelectric materials, laminated composite structures, dynamic buckling of thin walled structures, smart structures technologies, structural mechanics and energy harvesting using piezoelectric and pyroelectric materials.
- Autor: Haim Abramovich
- 2017, 770 Seiten, Englisch
- Verlag: Elsevier Science & Techn.
- ISBN-10: 008100429X
- ISBN-13: 9780081004296
- Erscheinungsdatum: 29.05.2017
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
- Dateiformat: ePub
- Größe: 222 MB
- Mit Kopierschutz
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