This book covers the behavior and design of fiber-reinforced polymer strengthened metallic structures based on existing international research. It outlines the applications, existing design guidance, and the special characteristics of FRP composites within the context of their use in the strengthening of metallic structures. It addresses the bond behavior between FRP and metal, and the strengthening of members, and then looks at bending, compression and concentrated forces, and the improvement of fatigue performance. It serves as a resource for engineers, researchers, and graduate students.
This book covers the behavior and design of fiber-reinforced polymer strengthened metallic structures based on existing international research. It outlines the applications, existing design guidance, and the special characteristics of FRP composites within the context of their use in the strengthening of metallic structures. It addresses the bond behavior between FRP and metal, and the strengthening of members, and then looks at bending, compression and concentrated forces, and the improvement of fatigue performance. It serves as a resource for engineers, researchers, and graduate students.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Prof. Xiao-Ling Zhao obtained his BE and ME from Shanghai JiaoTong University, China, both his PhD and Doctor of Engineering from The University of Sydney, while his MBA (Executive) was jointly awarded by The University of Sydney and University of New South Wales. He was appointed as chair of structural engineering at Monash University in 2001. Prof. Zhao has received fellowships from The Royal Academy of Engineering UK, Swiss National Science Foundation, Humboldt Foundation, Japan Society for Promotion of Science and Chinese 1000-talent program. He chairs the International Institute of FRP for Construction working group on FRP Strengthened Metallic Structures.
Inhaltsangabe
1. Introduction 2. FRP Composites and Metals 3. Behavior of the Bond between FRP and Metal 4. Flexural Strengthening of Steel and Steel-Concrete Composite Beams with FRP Laminates 5. Strengthening of Compression Members 6. Strengthening of Web Crippling of Beams Subject to End Bearing Forces 7. Enhancement of Fatigue Performance
1. Introduction 2. FRP Composites and Metals 3. Behavior of the Bond between FRP and Metal 4. Flexural Strengthening of Steel and Steel-Concrete Composite Beams with FRP Laminates 5. Strengthening of Compression Members 6. Strengthening of Web Crippling of Beams Subject to End Bearing Forces 7. Enhancement of Fatigue Performance
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