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2024 | OriginalPaper | Buchkapitel

A New Analytical Model for FRCM Coupons

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Abstract

An analytical approach to describe FRCM coupons subjected to standard tensile tests is presented. The coupon is idealized assuming a mono-axial stress state and considering both matrix and fiber. Matrix and fiber interact at the common interface by means of tensile stresses. The fiber is supposed linear elastic, mortar is elastic perfectly brittle and the interface is characterized by a trilinear tau-slip law, where the first stage is elastic, the second involves linear softening and the third exhibits a constant tangential strength. A single second order linear differential equation - deduced from simple longitudinal equilibrium equations - governs the field problem in the three stages of the interface. The only independent variable is the slip at the interface and the solution can be obtained analytically. A priori it is not possible to know the position of the points where the interface exits one phase to enter into another and consequently a discretization with small elements is implemented. The closed-form solution is known for each element where the only variables to be defined are the integration constants of the differential equation solution of the differential equation. Depending on the state of cracking of the mortar, all the constants are derived by imposing suitable boundary conditions at the edges of the elements. The model is successfully validated against available experimental results and previously presented numerical models.

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Literatur
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Zurück zum Zitat ACI Committee. Guide to Design and Construction of Externally Bonded Fabric-Reinforced Cementitious Matrix and Steel-Reinforced Grout Systems for Repair and Strengthening of Concrete Structures. ACI 549.4 R-20 (2020) ACI Committee. Guide to Design and Construction of Externally Bonded Fabric-Reinforced Cementitious Matrix and Steel-Reinforced Grout Systems for Repair and Strengthening of Concrete Structures. ACI 549.4 R-20 (2020)
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Zurück zum Zitat Rotunno, T., Fagone, M., Grande, E., Milani, G.: FRCM-to-masonry bonding behaviour in the case of curved surfaces: experimental investigation. Compos. Struct. 313, 116913 (2023)CrossRef Rotunno, T., Fagone, M., Grande, E., Milani, G.: FRCM-to-masonry bonding behaviour in the case of curved surfaces: experimental investigation. Compos. Struct. 313, 116913 (2023)CrossRef
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Zurück zum Zitat Bertolesi, E., Fagone, M., Rotunno, T., Grande, E., Milani, G.: Experimental characterization of the textile-to-mortar bond through distributed optical sensors. Constr. Build. Mater. 326, 126640 (2022)CrossRef Bertolesi, E., Fagone, M., Rotunno, T., Grande, E., Milani, G.: Experimental characterization of the textile-to-mortar bond through distributed optical sensors. Constr. Build. Mater. 326, 126640 (2022)CrossRef
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Zurück zum Zitat Azimi, N., Dalabaschi, A., Oliveira, D.V., Ghiassi, B., Lourenço, P.B.: Tensile behavior of textile-reinforced mortar: Influence of test setup and layer arrangement. Constr. Build. Mater. 394, 132185 (2023)CrossRef Azimi, N., Dalabaschi, A., Oliveira, D.V., Ghiassi, B., Lourenço, P.B.: Tensile behavior of textile-reinforced mortar: Influence of test setup and layer arrangement. Constr. Build. Mater. 394, 132185 (2023)CrossRef
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Zurück zum Zitat Yuan, Y., Milani, G.: Non-linear analytical model for FRCM coupons in tension. Compos. Part B Eng. 260, 110735 (2023)CrossRef Yuan, Y., Milani, G.: Non-linear analytical model for FRCM coupons in tension. Compos. Part B Eng. 260, 110735 (2023)CrossRef
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Zurück zum Zitat Bertolesi, E., Carozzi, F.G., Milani, G., Poggi, C.: Numerical modeling of Fabric Reinforce Cementitious Matrix composites (FRCM) in tension. Constr. Build. Mater. 70, 531–548 (2014)CrossRef Bertolesi, E., Carozzi, F.G., Milani, G., Poggi, C.: Numerical modeling of Fabric Reinforce Cementitious Matrix composites (FRCM) in tension. Constr. Build. Mater. 70, 531–548 (2014)CrossRef
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Zurück zum Zitat Nerilli, F., Ferracuti, B.: A tension stiffening model for FRCM reinforcements calibrated by means of an extended database. Compos. Struct. 284, 115100 (2022)CrossRef Nerilli, F., Ferracuti, B.: A tension stiffening model for FRCM reinforcements calibrated by means of an extended database. Compos. Struct. 284, 115100 (2022)CrossRef
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Zurück zum Zitat Milani, G., Grande, E.: Simple bisection procedure in quickly convergent explicit ODE solver to numerically analyze FRCM strengthening systems. Compos. B Eng. 199, 108322 (2020)CrossRef Milani, G., Grande, E.: Simple bisection procedure in quickly convergent explicit ODE solver to numerically analyze FRCM strengthening systems. Compos. B Eng. 199, 108322 (2020)CrossRef
10.
Zurück zum Zitat Pingaro, N., Milani, G.: A novel analytical model for Fiber Reinforced Cementitious Matrix FRCM coupons subjected to tensile tests. Compos. Struct. 327, 117666 (2024)CrossRef Pingaro, N., Milani, G.: A novel analytical model for Fiber Reinforced Cementitious Matrix FRCM coupons subjected to tensile tests. Compos. Struct. 327, 117666 (2024)CrossRef
Metadaten
Titel
A New Analytical Model for FRCM Coupons
verfasst von
Natalia Pingaro
Gabriele Milani
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-57224-1_21

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