A comprehensive study was undertaken to investigate the most important factors influencing the increased demand for composite materials such as fibre-reinforced polymers in civil infrastructure applications. Subsequently, this research aimed to perform a conceptual review, which ultimately examines the viability of composite materials for civil infrastructure applications. In doing so, a review of the literature was carried out to determine how composites differ from traditional materials. As such, sustainable material practices were used as a framework. This research then assessed the viability of composite materials for infrastructure and produced a viability rubric. This research found that (a) the biggest trends currently influencing composite use in infrastructures include application-ability, constructability, design-ability and performance-ability. Moreover, innovation, sustainability requirements and economic constraints are also important considerations. Consequently, factors such as recyclability, cost and maintenance are also important inclusions. (b) Although composites have a higher manufacturing cost, the overall life-cycle cost, which includes installation and use costs, can be made more economical than those of traditional materials. Such findings can further promote the use of composite materials for civil infrastructure applications.
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June 2024
Research Article|
January 16 2024
Viability rubric of fibre-reinforced polymer composites for civil infrastructure applications
Jennifer McIntosh, BEng (Civil) Hon, FIEAust;
Jennifer McIntosh, BEng (Civil) Hon, FIEAust
Senior Structural Engineer
Transport for NSW, Sydney, Australia
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Koorosh Gharehbaghi, BC (Eng), MEng, MEd, PhD, PEng, MIEAust, MITE, MCIAust, MATSE, MWSST;
Koorosh Gharehbaghi, BC (Eng), MEng, MEd, PhD, PEng, MIEAust, MITE, MCIAust, MATSE, MWSST
Academic and Professional Engineer
RMIT University, Melbourne, Australia
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Kong Fah Tee, BEng (Civil) Hon, PhD, PGCert(HE), MBA, DIC, FHEA;
Department of Civil and Environmental Engineering, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia; Interdisciplinary Research Center for Construction and Building Materials, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia
(corresponding author: tee.fah@kfupm.edu.sa)
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Angelo De Luca, BEng (Civil), MIEAust;
Angelo De Luca, BEng (Civil), MIEAust
Structural Engineer
John Holland Group, Melbourne, Australia
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Josh Scott Taylor, BEng (Civil), MIEAust
Josh Scott Taylor, BEng (Civil), MIEAust
Civil Engineer
Evolution Mining, Perth, Australia
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(corresponding author: tee.fah@kfupm.edu.sa)
Publisher: Emerald Publishing
Received:
February 17 2023
Accepted:
November 27 2023
Online ISSN: 2053-0250
Print ISSN: 2053-0242
Emerald Publishing Limited: All rights reserved
2024
Infrastructure Asset Management (2024) 11 (2): 78–87.
Article history
Received:
February 17 2023
Accepted:
November 27 2023
Citation
McIntosh J, Gharehbaghi K, Tee KF, De Luca A, Taylor JS (2024), "Viability rubric of fibre-reinforced polymer composites for civil infrastructure applications". Infrastructure Asset Management, Vol. 11 No. 2 pp. 78–87, doi: https://doi.org/10.1680/jinam.23.00009
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