The seismic capacity of structural systems/members is usually defined in terms of deformation thresholds. Although this iseffective in many circumstances, disregarding cumulative quantities such as hysteretic energy may be ineffective when low-cycle fatigue is relevant (e.g., long-duration ground motions, very soft soils, ground-motion sequences). This paper presentsthe outcomes of an experimental campaign designed to explore the suitability of hysteretic energy thresholds to characterisedamage. To do so, three nominally identical masonry infill panels were subjected to in-plane (IP), quasi-static, cyclic displacement-controlled loads generating a moderate level of damage, followed by out-of-plane (OOP), dynamic shaking-table tests amplifieduntil collapse. The study investigated the effect of the IP hysteretic energy dissipation on the observed IP damage state, andthe subsequent OOP collapse capacity. Different IP loading protocols were designed to induce the same peak amplitude-basedengineering demand parameters (EDPs) while modulating the energy-based demands. In the IP phase, two specimens showed adamage pattern dominated by sliding along two to three horizontal cracks, while the third specimen was dominated by a diagonal,strut-like failure. For the sliding-dominated specimens, the IP hysteretic energy showed signs of a positive correlation with thelevel of damage, and, in turn, a possible negative correlation with the peak floor acceleration leading to complete OOP collapse.On the one hand, further complementary experimental tests and/or refined numerical analyses are needed to generalise the trendhighlighted here. On the other hand, the presented results pave the way for using energy-based EDPs for state-dependent seismicfragility assessment methodologies, thus allowing a refined consideration of damage accumulation.

Energy-Based Characterisation of Earthquake Damage in Masonry Infills Through Combined In-Plane and Out-of-Plane Experimental Tests / Gentile, R., Angelucci, G., Wu, J., Di Benedetto, M., Milanesi, R., Tropea, G.A., Mollaioli, F., Jalayer, F., Freddi, F., Di Trapani, F., Morandi, P., O'Reilly, G.J.. - In: EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS. - ISSN 0098-8847. - 55:13(2026), pp. 3302-3318. [10.1002/eqe.70251]

Energy-Based Characterisation of Earthquake Damage in Masonry Infills Through Combined In-Plane and Out-of-Plane Experimental Tests

Giulia Angelucci;Riccardo Milanesi;Giulio Augusto Tropea;Fabrizio Mollaioli;Fatemeh Jalayer;
2026

Abstract

The seismic capacity of structural systems/members is usually defined in terms of deformation thresholds. Although this iseffective in many circumstances, disregarding cumulative quantities such as hysteretic energy may be ineffective when low-cycle fatigue is relevant (e.g., long-duration ground motions, very soft soils, ground-motion sequences). This paper presentsthe outcomes of an experimental campaign designed to explore the suitability of hysteretic energy thresholds to characterisedamage. To do so, three nominally identical masonry infill panels were subjected to in-plane (IP), quasi-static, cyclic displacement-controlled loads generating a moderate level of damage, followed by out-of-plane (OOP), dynamic shaking-table tests amplifieduntil collapse. The study investigated the effect of the IP hysteretic energy dissipation on the observed IP damage state, andthe subsequent OOP collapse capacity. Different IP loading protocols were designed to induce the same peak amplitude-basedengineering demand parameters (EDPs) while modulating the energy-based demands. In the IP phase, two specimens showed adamage pattern dominated by sliding along two to three horizontal cracks, while the third specimen was dominated by a diagonal,strut-like failure. For the sliding-dominated specimens, the IP hysteretic energy showed signs of a positive correlation with thelevel of damage, and, in turn, a possible negative correlation with the peak floor acceleration leading to complete OOP collapse.On the one hand, further complementary experimental tests and/or refined numerical analyses are needed to generalise the trendhighlighted here. On the other hand, the presented results pave the way for using energy-based EDPs for state-dependent seismicfragility assessment methodologies, thus allowing a refined consideration of damage accumulation.
2026
State-dependent seismic fragility; Masonry infill panels; In-plane and out-of-plane interaction
01 Pubblicazione su rivista::01a Articolo in rivista
Energy-Based Characterisation of Earthquake Damage in Masonry Infills Through Combined In-Plane and Out-of-Plane Experimental Tests / Gentile, R., Angelucci, G., Wu, J., Di Benedetto, M., Milanesi, R., Tropea, G.A., Mollaioli, F., Jalayer, F., Freddi, F., Di Trapani, F., Morandi, P., O'Reilly, G.J.. - In: EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS. - ISSN 0098-8847. - 55:13(2026), pp. 3302-3318. [10.1002/eqe.70251]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1775934
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