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Frp: Strengthened RC Structures - ISBN 9780471487067

Frp: Strengthened RC Structures

ISBN 9780471487067

Autor: J. G. Teng, J. F. Chen, S. T. Smith, L. Lam

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 727,65 zł

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ISBN13:      

9780471487067

ISBN10:      

0471487066

Autor:      

J. G. Teng, J. F. Chen, S. T. Smith, L. Lam

Oprawa:      

Hardback

Rok Wydania:      

2001-11-19

Ilość stron:      

266

Wymiary:      

235x162

Tematy:      

TG

The strengthening of reinforced concrete (RC) structures using advanced fibre–reinforced polymer (FRP) composites, and in particular the behaviour of FRP–strengthened RC structures is a topic which has become very popular in recent years. This popularity has arisen due to the need to maintain and upgrade essential infrastructure in all parts of the world, combined with the well–known advantages of FRP composites, such as good corrosion resistance and ease for site handling due to their light weight. The continuous reduction in the material cost of FRP composites has also contributed to their popularity.
While a great amount of research now exists in the published literature on this topic, it is scattered in various journals and conference proceedings. This book therefore provides the first ever comprehensive, state–of–the–art summary of the existing research on FRP strengthening of RC structures, with the emphasis being on structural behaviour and strength models. The main topics covered include:
∗ bond behaviour
∗ flexural and shear strengthening of beams
∗ column strengthening
∗ flexural strengthening of slabs.
For each area, the methods of strengthening are discussed, followed by a description of behaviour and failure modes and then the presentation of rational design recommendations, for direct use in practical design of FRP strengthening measures.
Researchers, practicing engineers, code writers and postgraduate students in structural engineering and construction materials, as well as consulting firms, government departments, professional bodies, contracting firms and FRP material suppliers will find this an invaluable resource.

Spis treści:
Preface.
Notation.
FRP Composites for Strengthening RC Structures.
Bond Strength of FRP–to–concrete Joints.
Flexural Strengthening of Beams.
Shear Strengthening of Beams.
Flexural Strengthenin g of Slabs.
Strengthening of Axially and Eccentrically Loaded Columns.
Seismic Retrofit of Columns.
Index.

Okładka tylna:
The strengthening of reinforced concrete (RC) structures using advanced fibre–reinforced polymer (FRP) composites, and in particular the behaviour of FRP–strengthened RC structures is a topic which has become very popular in recent years. This popularity has arisen due to the need to maintain and upgrade essential infrastructure in all parts of the world, combined with the well–known advantages of FRP composites, such as good corrosion resistance and ease for site handling due to their light weight. The continuous reduction in the material cost of FRP composites has also contributed to their popularity.
While a great amount of research now exists in the published literature on this topic, it is scattered in various journals and conference proceedings. This book therefore provides the first ever comprehensive, state–of–the–art summary of the existing research on FRP strengthening of RC structures, with the emphasis being on structural behaviour and strength models. The main topics covered include:
∗ bond behaviour
∗ flexural and shear strengthening of beams
∗ column strengthening
∗ flexural strengthening of slabs.
For each area, the methods of strengthening are discussed, followed by a description of behaviour and failure modes and then the presentation of rational design recommendations, for direct use in practical design of FRP strengthening measures.
Researchers, practicing engineers, code writers and postgraduate students in structural engineering and construction materials, as well as consulting firms, government departments, professional bodies, contracting firms and FRP material suppliers will find this an invaluable resource.

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