Effects of Synthetic Fibers on the Mechanical Properties and Thickness Requirements of Roller-Compacted Concrete for Pavements

Onur Ozturk*, Hakan Nuri Atahan, Nilufer Ozyurt

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

Due to the construction method used, the use of conventional rebar is impractical for roller-compacted concrete (RCC) pavement applications, and the use of discrete fibers seems to be the best alternative to this problem. Among the available types, synthetic fibers are commonly employed in pavement applications, due to their advantages such as ease of handling, cost efficiency, and corrosion-free nature. However, studies that numerically examined the extent of synthetic fiber contribution to the mechanical properties and structural requirements of RCC pavements are very limited. To fill this gap in the literature, an experimental study was conducted to examine the effects of synthetic fibers on the fresh and hardened-state properties of RCC. Then, using the material parameters obtained in this study and retrieved (to cover the effect of different material compositions and synthetic fiber types) from the literature, thickness design for a sample pavement was conducted for plain and fiber-reinforced concrete mixtures, to determine the effect of different material compositions and fiber types on the thickness requirement of RCC pavements. Based on the results of the conducted experiments, the amount of change in the fresh- A nd hardened-state performance of RCC mixtures due to the addition of synthetic fibers were presented. Thickness design results showed that the contribution of fibers may vary in RCC mixtures depending on the type and amount of fibers used, and the properties of RCC mixture in which they are used. For the type and amount of fibers considered in this study, up to 25% reduction in required thickness was observed for synthetic fiber-reinforced RCC mixtures.

Original languageEnglish
Article number04022052
JournalJournal of Transportation Engineering Part B: Pavements
Volume148
Issue number4
DOIs
Publication statusPublished - 1 Dec 2022

Bibliographical note

Publisher Copyright:
© 2022 American Society of Civil Engineers.

Funding

The authors acknowledge Akcansa Cement Industry and Trade and Bogazici Concrete Industry and Trade for material supply. The authors also thank Umit Melep for his assistance during the experiments. The first author acknowledges the financial support given by The Scientific and Technological Research Council of Turkey (TUBİTAK) during his Ph.D. study.

FundersFunder number
Türkiye Bilimsel ve Teknolojik Araştırma Kurumu

    Keywords

    • Concrete pavement
    • Mechanical properties
    • Nylon fibers
    • Roller-compacted concrete (RCC)
    • Synthetic fibers
    • Thickness design

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