Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/140486
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Type: Journal article
Title: Experimental investigation of the influence of fibre content on the flexural performance of simply supported and continuous steel/UHPC composite slabs
Author: Chen, S.
Visintin, P.
Oehlers, D.J.
Citation: Steel and Composite Structures: an international journal, 2023; 49(5):571-585
Publisher: Korea Science : Techno-Press
Issue Date: 2023
ISSN: 1229-9367
1598-6233
Statement of
Responsibility: 
Sirui Chen, Phillip Visintin and Deric J. Oehlers
Abstract: The application of relatively low volumes of fibres in normal strength concrete has been shown to be of significant benefit when applied to composite slabs with profiled sheet decking. This paper reports on an experimental study aimed at quantifying further potential benefits that may arise from applying ultra-high performance fibre reinforced concrete. To assess performance six simply supported beams were tested under hogging and sagging loading configurations along with three two span continuous beams. Fibre contents are varied from 0% to 2% and changes in strength, deformation, crack width and moment redistribution are measured. At the serviceability limit state, it is shown that the addition of high fibre volumes can significantly enhance member stiffness and reduce crack widths in all beams. At the ultimate limit state it is observed that a transition from 0% to 1% fibres significantly increases strength but that there is a maximum fibre volume beyond which no further increases in strength are possible. Conversely, member ductility and moment redistribution are shown to be strongly proportional to fibre volume.
Keywords: composite profile slab; crack width; flexural strength; moment redistribution; UHPFRC
Rights: © 2023 KISTI. All Rights Reserved.
DOI: 10.12989/scs.2023.49.5.571
Grant ID: http://purl.org/au-research/grants/arc/190102650
Appears in Collections:Aurora submissions

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