Experimental Behavior of One-Way RC Ultra-Thin Slabs Retrofitted with Post-Installed NSM CFRP Rods
DOI:
https://doi.org/10.12974/2311-8717.2025.13.05Abstract
This study evaluates the flexural behavior of ultra-thin (50 mm) one‑way reinforced‑concrete (RC) slabs retrofitted with near‑surface mounted (NSM) carbon‑fiber‑reinforced polymer (CFRP) rods under quasi‑static loading. T300‑grade CFRP rods (≈4 mm diameter) were bonded in pre‑cut 7 mm × 7 mm grooves using a two‑part epoxy. As a proof-of-concept experimental baseline, three simply‑supported specimens (1000 mm × 500 mm × 50 mm) were tested in a six‑point bending configuration (four applied loads + two reactions): two conventional controls and one strengthened slab. A load‑control rate of ~15 kN/min was applied; the controls were cycled twice and the strengthened slab four times. Relative to the average of the two control specimens, the strengthened slab achieved ~+103% ultimate load (49.4 kN vs 24.3 kN) with a ~24% reduction in ductility (μΔ = 2.4 vs 3.15). Hysteretic dissipation, computed as loop area per cycle, was markedly higher for the strengthened slab; cycle‑matched comparisons (cycles 1–2) are reported alongside cumulative values. The results show that NSM CFRP can markedly enhance capacity and energy absorption of very thin one‑way slabs, with a trade‑off in ductility that should be considered in design.
References
Adriana S. Azevedo, João P. Firmo, João R. Correia, 2024. Three-dimensional finite element modelling of the fire response of passive and prestressed near-surface mounted (NSM)-CFRP-strengthened reinforced concrete slab strips. Composite Structures, Volume 331, 117872. https://doi.org/10.1016/j.compstruct.2023.117872
Adriana S. Azevedo, João P. Firmo, João R. Correia, Reza M. Firouz, Joaquim A.O. Barros, 2023. Fire behavior of reinforced concrete slab strips strengthened with prestressed NSM-CFRP laminates. Engineering Structures, Volume 297, 116982. https://doi.org/10.1016/j.engstruct.2023.116982
Alkhrdaji, T. & Nanni, A. Surface bonded FRP reinforcement for strengthening/repair of structural reinforced concrete. Proc., ICRI-NRCC Workshop, Baltimore, MD (USA), Oct 1999. 19.
Aljidda, O., El Refai, A., Alnahhal, W., Experimental and analytical investigation on the use of NSM–BFRP and NSM–GFRP bars in strengthening corrosion–damaged RC slabs, Composite Structures, Volume 322, 2023, 117428. https://doi.org/10.1016/j.compstruct.2023.117428
Asplund, S. Strengthening bridge slabs with grouted reinforcement. Journal Proceedings, 1949. 397-406.
Barros, J. A., Ferreira, D. R., Fortes, A. S. & Dias, S. J. 2006. Assessing the effectiveness of embedding CFRP laminates in the near surface for structural strengthening. Construction and Building Materials, 20, 478-491. https://doi.org/10.1016/j.conbuildmat.2005.01.030
Berger, J., Heffernan, P. & Wight, R. 2008. Blast testing of CFRP and SRP strengthened RC columns. Structures Under Shock and Impact, 98, 95-104. https://doi.org/10.2495/SU080101
BS 1881-124. 2021. Testing Concrete - Methods for analysis of hardened concrete, British Standard Institution, London, UK.
BS EN 12390-3. 2019. Testing hardened concrete - Compressive strength of test specimens. British Standard Institution, London, UK.
BS EN ISO 6892-1. 2019. Metallic materials. Tensile testing - Method of test at room temperature. British Standard Institution, London, UK.
De Lorenzis, L. & Teng, J. 2007. Near-surface mounted FRP reinforcement: An emerging technique for strengthening structures. Composites Part B: Engineering, 38, 119-143. https://doi.org/10.1016/j.compositesb.2006.08.003
Dias, S., Barros, J. & Janwaen, W. 2018. Behavior of Rc Beams Flexurally Strengthened with NSM CFRP Laminates. Composite Structures, 201, 363-376. https://doi.org/10.1016/j.compstruct.2018.05.126
Eurocode 2. 2004. Eurocode 2: Design of concrete structures, Part 1-1: General rules and rules for buildings. BS EN 1992-1-1, London. UK.
Frangou, M., Pilakoutas, K. & Dritsos, S. 1995. Structural repair/strengthening of RC columns. Construction and building materials, 9, 259266. https://doi.org/10.1016/0950-0618(95)00013-6
Ha, J. H., Yi, N. H., Choi, J. K. & Kim, J. H. J. 2011. Experimental study on hybrid CFRP-PU strengthening effect on RC panels under blast loading. Composite Structures, 93, 2070-2082. https://doi.org/10.1016/j.compstruct.2011.02.014
Hosseini, M. M., Dias, S. J. & Barros, J. A. 2014. Effectiveness of prestressed NSM CFRP laminates for the flexural strengthening of RC slabs. Composite Structures, 111, 249-258. https://doi.org/10.1016/j.compstruct.2013.12.018
Kim, JHJ, Yi, NH, Kim, SB, Choi, JK & Park, JC 2009, 'Experiment study on blast loading response of FRP-retrofitted RC slab structures', Paper presented at 2nd Asia-Pacific Conference on FRP in Structures, APFIS 2009, Seoul, Korea, Republic of, 09/12/9 - 09/12/11 pp. 533-538.
Lee, S. K., Chen, Z., Ng, M., Tang, J., Wan, L., Liu, M. & Lee, L. 2008. Evaluation of CFRP, GFRP and BFRP Material Systems for the Strengthening of RC Slabs. Journal of reinforced plastics and composites.
Meisami, M. H., Mostofinejad, D. & Nakamura, H. 2013. Punching shear strengthening of two-way flat slabs using CFRP rods. Composite Structures, 99, 112-122. https://doi.org/10.1016/j.compstruct.2012.11.028
Mosallam, A. S. & Mosalam, K. M. 2003. Strengthening of two-way concrete slabs with FRP composite laminates. Construction and Building Materials, 17, 43-54. https://doi.org/10.1016/S0950-0618(02)00092-2
Mukhopadhyaya, P. & Swamy, N. 2001. Interface shear stress: a new design criterion for plate debonding. Journal of Composites for Construction, 5, 35-43. https://doi.org/10.1061/(ASCE)1090-0268(2001)5:1(35)
Muszynski, L. C. & Purcell, M. R. 2003. Composite reinforcement to strengthen existing concrete structures against air blast. Journal of Composites for Construction, 7, 93-97. https://doi.org/10.1061/(ASCE)1090-0268(2003)7:2(93)
Ramana, V.P.V., Kant, T., Morton, S., Dutta, P., Mukherjee, A. & Desai, Y. 2000. Behavior of CFRPC strengthened reinforced concrete beams with varying degrees of strengthening. Composites Part B: Engineering, 31, 461-470. https://doi.org/10.1016/S1359-8368(00)00022-6
Razaqpur, A. G., Contestabile, E. & Tolba, A. 2009. Experimental study of the strength and deformations of carbon fiber reinforced polymer (CFRP) retrofitted reinforced concrete slabs under blast load. Canadian Journal of Civil Engineering, 36, 1366-1377. https://doi.org/10.1139/L09-002
Sastranegara, A., Adachi, T. & Yamaji, A. 2005. Improvement of energy absorption of impacted column due to transverse impact. International journal of impact engineering, 31, 483-496. https://doi.org/10.1016/j.ijimpeng.2003.12.009
Sebastian, W. M. 2001. Significance of midspan debonding failure in FRP-plated concrete beams. Journal of Structural Engineering, 127, 792-798. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:7(792)
Silva, P. F. & Lu, B. 2007. Improving the blast resistance capacity of RC slabs with innovative composite materials. Composites Part B: Engineering, 38, 523-534. https://doi.org/10.1016/j.compositesb.2006.06.015
Sharaky, I.A., Elamary, A.S., Alharthi, Y.M., Experimental and numerical investigation on the flexural performance of RC slabs strengthened with EB/NSM CFRP reinforcement and bonded reinforced HSC layers, Engineering Structures, Volume 289, 2023, 116338, https://doi.org/10.1016/j.engstruct.2023.116338
Täljsten, B., Carolin, A. & Nordin, H. 2003. Concrete structures strengthened with near surface mounted reinforcement of CFRP. Advances in structural engineering, 6, 201-213. https://doi.org/10.1260/136943303322419223
Tabatabaei, Z. S., Volz, J. S., Gliha, B. P. & Keener, D. I. 2012. Development of long carbon fiber-reinforced concrete for dynamic strengthening. Journal of Materials in Civil Engineering, 25, 1446-1455. https://doi.org/10.1061/(ASCE)MT.1943-5533.0000692
Wang, S. Y. & Wang, Z. Y. 2013. Mechanism of improving ductility of high strength concrete T-section beam confined by CFRP sheet subjected to flexural loading. Journal of Central South University, 20, 246-255. https://doi.org/10.1007/s11771-013-1482-2
Wu, C., Oehlers, D. J., Wachl, J., Glynn, C., Spencer, A., Merrigan, M. & Day, I. 2007. Blast testing of RC slabs retrofitted with NSM CFRP plates. Advances in Structural Engineering, 10, 397-414. https://doi.org/10.1260/136943307783239372