International Journal of Civil Engineering, ( ISI ), Volume (2), No (3), Year (2004-4) , Pages (193-200)

Title : A comparison between bond strength of steel and GFRP bars in self-consolidating concrete (SCC) ( A comparison between bond strength of steel and GFRP bars in self-consolidating concrete (SCC) )

Authors: Mohammad Reza Esfahani , Kianoush M.R , Lachemi M ,

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This paper compares the results of two experimental studies on bond strength of steel and GFRP bars in the case of self-consolidating concrete (SCC). Each study included pull-out tests of thirty six reinforcing bars embedded in concrete specimens. Two types of concretes, normal concrete and self-consolidating concrete were used in different studies. Different parameters such as bar location and cover thickness were considered as variables in different specimens. The comparison between the results of GFRP reinforcing bars with those of steel deformed bars showed that the splitting bond strength of GFRP reinforcing bars was comparable to that of steel bars in both normal strength and self-consolidating concrete (SCC). The bond strength of bottom reinforcing bars was almost the same for both normal concrete and self-consolidating concrete. However, for the top bars, the bond strength of self-consolidating concrete was less than that of normal concrete.

Keywords

, bond strength, glass FRP, reinforcing bars, self-consolidating concrete, steel
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@article{paperid:1005888,
author = {Esfahani, Mohammad Reza and Kianoush M.R and Lachemi M},
title = {A comparison between bond strength of steel and GFRP bars in self-consolidating concrete (SCC)},
journal = {International Journal of Civil Engineering},
year = {2004},
volume = {2},
number = {3},
month = {April},
issn = {1735-0522},
pages = {193--200},
numpages = {7},
keywords = {bond strength; glass FRP; reinforcing bars; self-consolidating concrete; steel bars},
}

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%0 Journal Article
%T A comparison between bond strength of steel and GFRP bars in self-consolidating concrete (SCC)
%A Esfahani, Mohammad Reza
%A Kianoush M.R
%A Lachemi M
%J International Journal of Civil Engineering
%@ 1735-0522
%D 2004

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