2019
DOI: 10.1680/jmacr.17.00312
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Axial strength and deformability of concrete confined with natural fibre-reinforced polymers

Abstract: This paper presents the results of an experimental study on the compressive behaviour of concrete confined by natural fibre-reinforced polymer (NFRP) jackets which are formed by embedding sisal fibres in an epoxy resin matrix. The sisal fibres are one of the cost-effective materials for use in seismic strengthening applications where a moderate increase in strength and ductility is required. This study has two main objectives: the first is to investigate the effectiveness of NFRP composites in increasing the s… Show more

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Cited by 50 publications
(30 citation statements)
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“…The JPFRP shell failed in a straight continuous crack from top to bottom, parallel to the direction of axial compressive stress and perpendicular to the alignment of the JPFRP confining layers, as shown in Figure 8. A similar failure pattern has been previously reported in the literature [36,37]. When the concrete core cracked, the confinement of the JPFRP laminate had activated and effectively resisted the lateral expansion.…”
Section: Circular Columnssupporting
confidence: 86%
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“…The JPFRP shell failed in a straight continuous crack from top to bottom, parallel to the direction of axial compressive stress and perpendicular to the alignment of the JPFRP confining layers, as shown in Figure 8. A similar failure pattern has been previously reported in the literature [36,37]. When the concrete core cracked, the confinement of the JPFRP laminate had activated and effectively resisted the lateral expansion.…”
Section: Circular Columnssupporting
confidence: 86%
“…Supporting our results, Refs. [26,36,55] also reported this type of failure for different types of FRP confined square specimens. Figure 9 shows the failure modes of low-and high-strength square specimens.…”
Section: Square Columnsmentioning
confidence: 67%
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