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February 21, 2026Procedia Structural Integrity2 citationsOpen Access

Seismic performance and modelling of reinforced concrete frames infilled with sliding joint ductile infills

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SPSimone PeluccoVDVan Sang DoanSVSimone Vincenzi

Key Points

  • The research aims to evaluate the seismic performance of reinforced concrete frames with sliding joint infills compared to traditional infills.
  • Analyzed a 5-storey reinforced concrete structure with varying infill properties and layouts.
  • Conducted linear, non-linear static, and non-linear dynamic analyses.
  • Assessed structural responses across different seismic performance limit states.
  • Demonstrated improved ductility and reduced brittle failure mechanisms with sliding joint infills.
  • Showed that varying infill design parameters affects global seismic response significantly.
  • Confirmed the effectiveness of pushover and response spectrum analyses in capturing seismic demands.

Abstract

The paper explores the seismic performance of reinforced concrete (RC) frames infilled with deformable masonry panels incorporating horizontal sliding joints. These innovative infill systems are designed to overcome the seismic vulnerabilities observed in traditional RC structures with rigid infills, where the interaction between the frame and infill often leads to undesirable brittle failure mechanisms. The study analyses the response of a 5-storey structure, adopted as a RC case study, varying the infill properties and layouts and the design ductility classes. The structural responses are assessed through linear, non-linear static and non-linear dynamic analyses, and they are discussed across different seismic performance limit states. Focus is on the ductility verification, collapse mechanisms and non-regularity in the infill distribution in elevation. Comparative results reveal how the presence of deformable infills under varying design parameters and different modelling strategies affects the global seismic response, and these results provide support to the development of design guidelines. Overall, the findings confirm the potential of sliding-joint infills in improving seismic performance and support their possible incorporation into performance-based design methodologies. The study also highlights the potential capability of Response Spectrum Analysis and Pushover analysis to capture the seismic demands in infilled frames.

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Cite This Study

Pelucco et al. (2026) studied this question.

synapsesocial.com/papers/69994b41873532290d01f62fhttps://doi.org/10.1016/j.prostr.2025.12.076
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