In this work, plant fibres (hemp, sisal and ramie fibres) and human hair were incorporated into high-strength concrete (HSC) to assess their suitability as reinforcement materials. The mechanical properties of the high-strength natural-fibre-reinforced concretes (NFRCs) were experimentally evaluated and compared with those of conventional concrete. However, the inherent variability of natural fibres means it is difficult to predict complex mechanical properties, so advanced modelling techniques are required. To address this challenge, a hybrid artificial intelligence (AI) model is proposed to accurately predict mechanical properties and assess the suitability of different natural fibres in HSC applications. The hybrid model is based on a temporal convolutional network enhanced with an attention mechanism. The model achieved a high predictive performance with R2 = 0.993 for compressive strength, R2 = 0.993 for split tensile strength and R2 = 0.9969 for flexural strength. The model exhibited low prediction errors for these strengths, with root mean square errors of 0.6897 MPa, 0.0834 MPa and 0.0778 MPa, respectively, indicating strong predictive capability. Compared with conventional methods, the proposed approach reduced the prediction error by approximately 20–30%. The combined experimental and data-driven approach provides a reliable framework for predicting the mechanical properties of high-strength NFRC.
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Research Article|
September 10 2026
Hybrid AI-based prediction of mechanical properties of sustainable high-strength natural-fibre-reinforced concrete
Prithvi Ravi;
Sri Sivasubramaniya Nadar College of Engineering
, Kalavakkam, India
Corresponding author Prithvi R (prithvikrishnan38@gmail.com)
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Sangeetha Palanivelu
Sangeetha Palanivelu
Sri Sivasubramaniya Nadar College of Engineering
, Kalavakkam, India
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Corresponding author Prithvi R (prithvikrishnan38@gmail.com)
Declaration of competing interests The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Publisher: Emerald Publishing
Received:
January 27 2026
Accepted:
June 08 2026
Online ISSN: 1751-763X
Print ISSN: 0024-9831
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Magazine of Concrete Research 1–20.
Article history
Received:
January 27 2026
Accepted:
June 08 2026
Citation
Ravi P, Palanivelu S (2026;), "Hybrid AI-based prediction of mechanical properties of sustainable high-strength natural-fibre-reinforced concrete". Magazine of Concrete Research, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jmacr.26.00044
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