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Article

Thin HPFRC Jackets for Axially Loaded RC Columns: Mechanical Behavior and Efficacy of Strengthening

by
Maria Dolores Criado Fernández
1,2,
Sonia Martínez de Mingo
2 and
Ana Almerich-Chulia
3,*
1
Doctoral School, Universitat Politècnica de València, 46022 Valencia, Spain
2
T.U. Experimental Evaluation of Structures, Eduardo Torroja Institute of Construction Sciences (IETCC), CSIC, 28033 Madrid, Spain
3
Department of Continuum Mechanics and Structural Theory, Universitat Politècnica de València, 46022 Valencia, Spain
*
Author to whom correspondence should be addressed.
Materials 2026, 19(2), 220; https://doi.org/10.3390/ma19020220
Submission received: 20 October 2025 / Revised: 14 November 2025 / Accepted: 17 November 2025 / Published: 6 January 2026

Abstract

The environmental impact of the construction sector underscores the urgent need for sustainable solutions to extend the service life of existing structures. This study explores High-Performance Fiber-Reinforced Concrete (HPFRC) for strengthening reinforced-concrete (RC) columns subjected to axial compression. Twelve RC columns were tested, each 1200 mm high and with varying cross-sectional shapes (circular, square, and rectangular). Strengthening was achieved using thin HPFRC jackets (less than 30 mm thick), applied without additional internal reinforcement and following simple surface preparation techniques such as sandblasting. Full-height jacketing significantly improved axial load capacity. Its effectiveness did not decrease with the shape of the cross-section, with square columns showing up to a 105% increase and rectangular ones up to 87%, compared to unstrengthened columns with the same concrete strength. The highest improvement was observed in the square column with full-height jacketing and the most significant geometric strengthening ratio (52.6%), which doubled its axial capacity. This ratio was directly related to performance gains. Although ductility gains were limited, the full-jacketed specimens did not fail explosively: their failure mode was progressive, providing a useful warning before collapse. HPFRC jacketing can be especially effective for non-circular columns, outperforming FRP jacketing and eliminating the need for additional protective layers against impact or fire.
Keywords: high-performance fiber-reinforced concrete; RC columns; structural strengthening; jacketing; sustainability; axial compression; load-bearing capacity high-performance fiber-reinforced concrete; RC columns; structural strengthening; jacketing; sustainability; axial compression; load-bearing capacity

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MDPI and ACS Style

Criado Fernández, M.D.; de Mingo, S.M.; Almerich-Chulia, A. Thin HPFRC Jackets for Axially Loaded RC Columns: Mechanical Behavior and Efficacy of Strengthening. Materials 2026, 19, 220. https://doi.org/10.3390/ma19020220

AMA Style

Criado Fernández MD, de Mingo SM, Almerich-Chulia A. Thin HPFRC Jackets for Axially Loaded RC Columns: Mechanical Behavior and Efficacy of Strengthening. Materials. 2026; 19(2):220. https://doi.org/10.3390/ma19020220

Chicago/Turabian Style

Criado Fernández, Maria Dolores, Sonia Martínez de Mingo, and Ana Almerich-Chulia. 2026. "Thin HPFRC Jackets for Axially Loaded RC Columns: Mechanical Behavior and Efficacy of Strengthening" Materials 19, no. 2: 220. https://doi.org/10.3390/ma19020220

APA Style

Criado Fernández, M. D., de Mingo, S. M., & Almerich-Chulia, A. (2026). Thin HPFRC Jackets for Axially Loaded RC Columns: Mechanical Behavior and Efficacy of Strengthening. Materials, 19(2), 220. https://doi.org/10.3390/ma19020220

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