Steel-concrete composite structures, including concrete-filled steel tubular (CFST) structures and concrete-filled double skin steel tubular (CFDST) structures, have seen a significant increase in use in the modern construction industry due to their superior structural performance compared to conventional steel bare sections and reinforced concrete (RC) structures. Single Skin and Double Skin Concrete Filled Tubular Structures presents state-of-the-art in CFST and CFDST structures and their performance under various static loading conditions. The book establishes a foundation for understanding the structural performance of composite structures by discussing the behavior of CFST and CFDST structures based on experimental and finite element (FE) investigations. Besides, numerical and analytical methods for investigating the behavior of CFST and CFDST structures are presented in detail. The title offers many design examples following international design codes, including North American design guidelines ANSI-AISC 360, European design regulations Eurocode 4, and Australian design code AS 5100. The title can be used for the practical use of civil engineers and as a resource for further research.
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1. Introduction
2. Experimental results
3. Analytical Methods
4. Numerical Methods
5. Design Rules and Standards
6. Future Research
Presents a comprehensive summary of research into single- and double-skin tubular members
Provides up-to-date advances on single-skin and double-skin constructions
Explains and illustrates the structural performance of columns, beams, and beam-columns
Discusses failure mechanism and gives detailed photographic references
Presents analytical and numerical investigations for the behavior of single-skin and double-skin constructions
Offers design examples following North American, European, and Australian codes
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Produktdetaljer
ISBN
9780323855969
Publisert
2021-12-02
Utgiver
Vendor
Woodhead Publishing
Vekt
1360 gr
Høyde
229 mm
Bredde
152 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
834
Forfatter