Different commercial Finite Element Codes proved to be able to describe the mechanical behavior of masonry materials externally reinforced by means of Carbon Fiber Reinforced Polymers (CFRP); the behavior of fracturing materials, characterized by low tensile strength, with adhered strips can be reproduced relying on parameters based on fracture mechanics and the theories of adhesion. In this report the comparison is made of previous experimental test results with numerical analysis, carried out on masonry panels reinforced with CFRP strips and subjected to out of plane actions. The comparison is especially addressed to the evaluation of the post peak branch; in addition to the slopes of the diagram in the pre-critic phase, available kinematic ductility and energy shares both prior and after the peak load were considered in order to interpret the capability of the micro-mechanical model implemented in the FEM Code to account for the local phenomena influencing the interaction between masonry and FRP strengthening systems.
Predictive Capability of a Finite Element Micro-Mechanical Model for Masonry Elements Reinforced Using CFRP / Fagone M.; Ranocchiai G.; Rotunno T.; Grande E.. - ELETTRONICO. - 916:(2022), pp. 186-192. (Intervento presentato al convegno 7th International Conference on Mechanics of Masonry Structures Strengthened With Composite Materials, MuRiCo 7 2021 nel 2021) [10.4028/p-jco79d].
Predictive Capability of a Finite Element Micro-Mechanical Model for Masonry Elements Reinforced Using CFRP
Fagone M.;Ranocchiai G.
;Rotunno T.;
2022
Abstract
Different commercial Finite Element Codes proved to be able to describe the mechanical behavior of masonry materials externally reinforced by means of Carbon Fiber Reinforced Polymers (CFRP); the behavior of fracturing materials, characterized by low tensile strength, with adhered strips can be reproduced relying on parameters based on fracture mechanics and the theories of adhesion. In this report the comparison is made of previous experimental test results with numerical analysis, carried out on masonry panels reinforced with CFRP strips and subjected to out of plane actions. The comparison is especially addressed to the evaluation of the post peak branch; in addition to the slopes of the diagram in the pre-critic phase, available kinematic ductility and energy shares both prior and after the peak load were considered in order to interpret the capability of the micro-mechanical model implemented in the FEM Code to account for the local phenomena influencing the interaction between masonry and FRP strengthening systems.File | Dimensione | Formato | |
---|---|---|---|
Fagone et al. - 2022 - Predictive Capability of a Finite Element Micro-Mechanical Model for Masonry Elements Reinforced Using CFRP.pdf
Accesso chiuso
Descrizione: MuRiCo7 - Predictive Capability
Tipologia:
Pdf editoriale (Version of record)
Licenza:
Tutti i diritti riservati
Dimensione
1.51 MB
Formato
Adobe PDF
|
1.51 MB | Adobe PDF | Richiedi una copia |
I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.