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Experimental behavior of scc with nano-silica andnumerical analysis of cfst composite columns usingscc as an infill

2017
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Advisor: Doç. Dr. Esra Mete Güneyisi

Abstract (EN)

Composite sections are being increasingly popular in constructionindustry. Among them, concrete lled steel tube (CSFT) members areprimarily suited for dierent structural applications. This compositesystem uses the compressive strength of the concrete core as well asthe strength, stiness and connement eect of the surrounding steeltube. In this thesis, rstly, an experimental study on the behavior ofself- compacting concrete (SCC) containing high volume of nano- silica(up to 6%) and 'y ash (up to 75%) was conducted. Secondly, anumerical investigation on short CFST columns made with SCCproduced in the rst part of study was carried out. The structuralresponse of the composite columns were evaluated under the eect ofcompression up to failure. Two design codes such as AmericanConcrete Institute (ACI) and Eurocode 4 (EC4) were used forcalculating the ultimate axial strength of CFST columns lled with SCC.The 16 SCC mixtures were studied and their concrete compressivestrength results at two dierent testing ages were used to get the code predicted ultimate axial strength of the composite columns. Theexperimental and numerical results were given and discussedcomparatively.

Author

Dr. Asraa Younıs Jahad Al Goody

How to Cite

Asraa Younıs Jahad Al Goody (Doctorate thesis). Experimental behavior of scc with nano-silica andnumerical analysis of cfst composite columns usingscc as an infill, 2017, Gaziantep University.

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