Fiber-reinforced-plastic (FRP) reinforcement for concrete structures : properties and applications
著者
書誌事項
Fiber-reinforced-plastic (FRP) reinforcement for concrete structures : properties and applications
(Developments in civil engineering, v. 42)
Elsevier, 1993
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注記
Includes bibliographical references
内容説明・目次
内容説明
The use of fibre reinforced plastic (FRP) composites for prestressed and non-prestressed concrete reinforcement has developed into a technology with serious and substantial claims for the advancement of construction materials and methods. Research and development is now occurring worldwide. The 20 papers in this volume make a further contribution in advancing knowledge and acceptance of FRP composites for concrete reinforcement. The articles are divided into three parts. Part 1 introduces FRP reinforcement for concrete structures and describes general material properties and manufacturing methods. Part 2 covers a three-continent perspective of current R&D, design and code implementations, and technical organizations' activities. Part 3 presents an in-depth description of commerically-available products, construction methods, and applications. The work is intended for engineers, researchers and developers with the objective of presenting them with a world-wide cross-section of initiatives, representative products and significant applications.
目次
- Part 1 Introductory topics: FRP reinforcement for prestressed and non-prestressed concrete structures, A. Nanni
- FRP reinforcement - materials and manufacturing, C.E. Bakis
- properties of FRP reinforcements for concrete, L.C. Bank. Part 2 International perspective: a Canadian perspective on R&D, design/code and technical committees, M.A. Erki and S.H. Rizkalla
- FRP developments and applications in Europe, L.R. Taerwe
- an overview of R&D in Japan, Y. Sonobe
- FRP development in the United States, C. Dolan. Part 3 FRP reinforcement products: 1-D reinforcing systems - glass FRP reinforcing bars for concrete, S.S. Faza and H.V.S. GangaRao, properties and applications of vinylon FRP rod (CLATEC rod), M. Okazaki, CFCC (carbon FRP cable), N. Santoh, testing and application of prestressed concrete beams with CFRP tendons, T. Katou and N. Hayashida, TECHNORA, an aramid FRP rod, K. Noritake et al, FiBRA, T. Tamura, glass fibre prestressing system, R. Wolff and H.J. Miesseler, PARAFIL ropes for prestressing applications, C.J. Burgoyne
- 2-D and 3-D reinforcing systems - NEFMAC - grid type reinforcement, M. Sugita, three-dimensional fabric reinforcement, H. Nakagawa et al, new three-dimensional FRP reinforcement, T. Yonezawa et al
- external reinforcing systems - FRP bonded sheets, U. Meier et al, a retrofitting method for reinforced concrete structures using carbon fibre, Y. Kobatake et al.
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