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June 4, 2026Materials0 citationsOpen Access

Numerical Modeling of RC Beams Strengthened with Non-Pretensioned and Pretensioned NSM CFRP Strips

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SSSzymon SeręgaRKRenata Kotynia

Key Points

  • The study aims to assess the effectiveness of pretensioned versus non-pretensioned CFRP strengthening for RC beams under various loading conditions.
  • Conducted experimental tests on six reinforced concrete beams with varying steel ratios and preloading levels.
  • Developed 3D numerical models that incorporate the nonlinear behavior of materials involved.
  • Performed a sensitivity analysis on material parameters not directly derived from experiments.
  • Numerical models accurately predict the flexural behavior of RC members across the loading range.
  • Active strengthening does not change the ultimate limit state but improves serviceability limit states.
  • The computational model effectively analyzes scenarios involving damage and loading during the strengthening process.

Abstract

This paper presents research on reinforced concrete beams strengthened with non-pretensioned and pretensioned near-surface-mounted (NSM) carbon fibre-reinforced polymer (CFRP) strips under self-weight and external preloading. The first part of this paper briefly describes and discusses the results of experimental tests performed on six beams with different reinforcing steel ratios, preloading levels, and strengthening-system configurations. Next, three-dimensional (3D) numerical models of the tested specimens were developed. The models consider the nonlinear behavior of concrete (both in tension and compression), steel bars, and the interface between concrete and CFRP laminates. For these models, the material parameters were established based on experiments and recommendations from the literature. Furthermore, a sensitivity analysis was conducted with respect to the material parameters of the model that were not directly obtained from experimental measurements. The analyses validated the applicability of the numerical model in predicting the flexural behavior of reinforced concrete (RC) members strengthened with near-surface-mounted (NSM) CFRP materials over the full loading range. Furthermore, the developed models were employed to assess the effectiveness of active strengthening relative to passive strengthening methods (i.e., without pretensioning of the laminate). A comparison study of actively and passively strengthened elements indicates that prestressing does not affect the ultimate limit state but enhances serviceability limit states. The presented computational model, together with the adopted computational strategy, demonstrates its effectiveness for analyzing realistic scenarios involving RC beams that are damaged and subjected to loading during the strengthening process.

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Cite This Study

Seręga et al. (2026) studied this question.

synapsesocial.com/papers/6a2117bfd499ed480b170928https://doi.org/10.3390/ma19112357
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