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2024 | OriginalPaper | Buchkapitel

A Numerical Model for FRCM Reinforced System Based on Bisection Procedure

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Abstract

The application of Fiber Reinforced Cementitious Matrix (FRCM) composites for the reinforcement of building surfaces is more and more common, especially for masonry structures, thanks to their compatibility and the ability to reverse the intervention process. Various analytical and numerical models have been developed to replicate the bond behavior of this complicated system. However, most existing simplified models tend to focus on either the failure of the fiber-mortar interface or the mortar-substrate interface. The influence of mortar cracking and the presence of masonry joints are aspects that have not been extensively investigated. In this paper, we introduce a mathematical model that considers the failures of both the fiber-matrix and matrix-masonry interfaces, as well as the damage to the mortar matrix. We address the debonding problem by formulating an ordinary differential equation (ODE) system and employing a 2D bisection procedure after discretization along the bond length. Two scenarios are discussed, one with consideration of mortar joints and one without. Comparative analysis with existing experimental data and models reveals that the current model performs promisingly in predicting global stress-slip curves.

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Literatur
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Zurück zum Zitat Khatir, A., Capozucca, R., Magagnini, E., Khatir, S., Bettucci, E.: Structural health monitoring for RC beam based on RBF neural network using ex-perimental modal analysis. In: Capozucca, R., Khatir, S., Milani, G. (eds.) Proceedings of the International Conference of Steel and Composite for Engineering Structures. ICSES 2022. LNCE, vol. 317, pp. 82–92. Springer, Cham (2022). https://doi.org/10.1007/978-3-031-24041-6_7 Khatir, A., Capozucca, R., Magagnini, E., Khatir, S., Bettucci, E.: Structural health monitoring for RC beam based on RBF neural network using ex-perimental modal analysis. In: Capozucca, R., Khatir, S., Milani, G. (eds.) Proceedings of the International Conference of Steel and Composite for Engineering Structures. ICSES 2022. LNCE, vol. 317, pp. 82–92. Springer, Cham (2022). https://​doi.​org/​10.​1007/​978-3-031-24041-6_​7
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Zurück zum Zitat Capozucca, R., Khatir, A., Magagnini, E.: Experiences on anchorage systems for FRP rods. In: Capozucca, R., Khatir, S., Milani, G. (eds.) Proceedings of the International Conference of Steel and Composite for Engineering Structures. ICSCES 2022. LNCS, vol. 3178, pp. 48–58. Springer, Cham (2022).https://doi.org/10.1007/978-3-031-24041-6_4 Capozucca, R., Khatir, A., Magagnini, E.: Experiences on anchorage systems for FRP rods. In: Capozucca, R., Khatir, S., Milani, G. (eds.) Proceedings of the International Conference of Steel and Composite for Engineering Structures. ICSCES 2022. LNCS, vol. 3178, pp. 48–58. Springer, Cham (2022).https://​doi.​org/​10.​1007/​978-3-031-24041-6_​4
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Zurück zum Zitat CNR - Advisory Committee on Technical Recommendations for Construction: CNR-DT 215/2018, Guide for the Design and Construction of Externally Bonded Fibre Reinforced Inorganic Matrix Systems for Strengthening Existing Structures (2020) CNR - Advisory Committee on Technical Recommendations for Construction: CNR-DT 215/2018, Guide for the Design and Construction of Externally Bonded Fibre Reinforced Inorganic Matrix Systems for Strengthening Existing Structures (2020)
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Zurück zum Zitat Bettucci, E., Capozucca, R., Khatir, A., Khatir, S., Magagnini, E.: Concrete plates reinforced with embedded CFRP rods and carbon/steel strips. In: In International Conference of Steel and Composite for Engineering Structures. ICSCES 2022. LNCE, vol. 317, pp. 70–81. Springer, Cham (2022). https://doi.org/10.1007/978-3-031-24041-6_6 Bettucci, E., Capozucca, R., Khatir, A., Khatir, S., Magagnini, E.: Concrete plates reinforced with embedded CFRP rods and carbon/steel strips. In: In International Conference of Steel and Composite for Engineering Structures. ICSCES 2022. LNCE, vol. 317, pp. 70–81. Springer, Cham (2022). https://​doi.​org/​10.​1007/​978-3-031-24041-6_​6
Metadaten
Titel
A Numerical Model for FRCM Reinforced System Based on Bisection Procedure
verfasst von
Yu Yuan
Gabriele Milani
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-57224-1_3

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