Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/83056
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Type: Conference paper
Title: An Experimental Study on the Compressive Behavior of CFRP-Confined High- and Ultra High-Strength Concrete
Author: Vincent, T.
Ozbakkaloglu, T.
Citation: Advanced Materials Research, 2013 / Huang, Y., Bao, T., Wang, H. (ed./s), vol.671-674, pp.1860-1864
Publisher: Trans Tech Publications Ltd
Publisher Place: Switzerland
Issue Date: 2013
Series/Report no.: Advanced Materials Research
ISBN: 9783037856611
ISSN: 1022-6680
1662-8985
Conference Name: International Conference on Structures and Building Materials (ICSBM) (9 Mar 2013 - 10 Mar 2013 : Guizhou, China)
Editor: Huang, Y.
Bao, T.
Wang, H.
Statement of
Responsibility: 
Thomas Vincent and Togay Ozbakkaloglu
Abstract: It is well established that external confinement of concrete with fiber reinforced polymer (FRP) sheets results in significant improvements on the axial compressive behavior of concrete. This understanding has led to a large number of experimental studies being conducted over the last two decades. However, the majority of these studies have focused on normal strength concretes (NSC) with compressive strengths lower than 55 MPa, and studies on higher strength concretes have been very limited. This paper presents the results of an experimental study on the compressive behavior of FRP confined high- and ultra high-strength concrete (HSC and UHSC) with average compressive strengths of 65 and 100 MPa. A total of 29 specimens were tested under axial compression to investigate the influence of key parameters such as concrete strength and method of confinement. All specimens were cylindrical, confined with carbon FRP and were 305 mm in height and 152 mm in diameter. Results obtained from the laboratory testing were graphically presented in the form of axial stress-strain relationships and key experimental outcomes are discussed. The results of this experimental study indicate that above a certain confinement threshold, FRP-confined HSC and UHSC exhibit highly ductile behavior. The results also indicate that FRP-wrapped specimens perform similar to concrete-filled FRP tube (CFFT) specimens at ultimate condition, however notable differences are evident at the transition region when comparing stress-strain curves.
Keywords: Concrete
Concrete Strength
Confinement
Confinement Method
Fibre Reinforced Polymer (FRP)
High-Strength Concrete (HSC)
Ultra High-Strength Concrete
Rights: ©(2013) Trans Tech Publications
DOI: 10.4028/www.scientific.net/AMR.671-674.1860
Published version: http://dx.doi.org/10.4028/www.scientific.net/amr.671-674.1860
Appears in Collections:Aurora harvest 4
Civil and Environmental Engineering publications

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