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Title Enhancement of concrete performance and sustainability through incorporation of diverse waste carpet fibres
ID_Doc 15752
Authors Gamage, N; Gunasekara, C; Law, DW; Houshyar, S; Setunge, S; Cwirzen, A
Title Enhancement of concrete performance and sustainability through incorporation of diverse waste carpet fibres
Year 2024
Published
DOI 10.1016/j.conbuildmat.2024.137921
Abstract Carpet fibres have demonstrated the potential to mitigate early-age cracking and improve tensile properties in concrete. However, a detailed analysis of the varied types of standard carpet fibres in reinforced concrete has been lacking. This study aims to bridge this gap by investigating the performance of concrete reinforced with widely used waste carpet fibres, namely Nylon, Polypropylene, Polytrimethylene terephthalate, and Polyester. The study employs fibres at 0.3 % and 0.5 % volume fractions with a 12 mm length. The research examines mechanical properties, shrinkage and cracking behaviour, pore structure, microstructure, and the ITZ. Results show that 0.3 % fibre volume yielded optimal performance based on GRA analysis. All fibre types reduced shrinkage compared to the control with no fibres. Nylon T1 at 0.3 % achieved a 22.3 % reduction at 90 days. Furthermore, fibre inclusion enhanced flexural and splitting tensile strengths up to 12 % and 39 % respectively due to fibre bridging, pore refinement, and reduced porosity. Notably, individual fibre mechanical properties influenced concrete performance significantly. Hydrophilic fibres exhibited a thinner 10 mu m ITZ compared to 15 mu m for hydrophobic fibres, contributing to denser interfacial regions and improved bonding. This study demonstrates the potential of carpet fibre-reinforced concrete as a sustainable solution, offering enhanced mechanical properties, shrinkage mitigation, and effective utilization of carpet waste, addressing critical issues in construction and waste management sectors.
Author Keywords Recycled textile; Carpet waste; Fibre reinforced concrete; Green construction; Waste management
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001297674900001
WoS Category Construction & Building Technology; Engineering, Civil; Materials Science, Multidisciplinary
Research Area Construction & Building Technology; Engineering; Materials Science
PDF https://doi.org/10.1016/j.conbuildmat.2024.137921
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