Seismic Performance of RC Frames with Assembled Energy-Dissipating Infill Walls Using Hollow T-Shaped Metal Connectors

In reinforced concrete (RC) frames, appropriate infill-wall connections can mitigate detrimental frame-wall interaction and improve seismic response. This study proposes an RC frame with an assembled energy-dissipating infill wall (RCF-AEIW) using hollow T-shaped metal connectors. The system largely retains the layout, assembly, and construction procedures of conventional autoclaved lightweight concrete infill walls while adding an energy-dissipation mechanism. A finite element model is validated against published experiments and used for parametric and comparative analyses under static cyclic and dynamic time-history loading. Under static cyclic loading, RCF-AEIW increases load-carrying capacity and total accumulated energy by 32.07% and 81.73%, respectively, relative to the bare RC frame. Under the selected ground motion at a peak ground acceleration of 0.4 g, it reduces maximum interstory displacement by 12.5% relative to the traditional masonry-infilled frame. These preliminary numerical results indicate potential improvements in energy dissipation and deformation control under the investigated conditions.

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Publication Details

Journal
Canadian Journal of Civil Engineering
Published
2026-09-29
DOI
https://doi.org/10.1139/cjce-2026-0068
Primary Topic
Masonry and Concrete Structural Analysis
Type
article
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article

Seismic Performance of RC Frames with Assembled Energy-Dissipating Infill Walls Using Hollow T-Shaped Metal Connectors

Cristoforo Demartino, Carlotta Pia Contiguglia, Lin Chen, Mingli Shi et al.
Canadian Journal of Civil Engineering
Masonry and Concrete Structural Analysis
article

Seismic Performance of RC Frames with Assembled Energy-Dissipating Infill Walls Using Hollow T-Shaped Metal Connectors

Cristoforo Demartino, Carlotta Pia Contiguglia, Lin Chen, Mingli Shi, Quan Zhou, Shuisheng Li, Yu Gao, Yong Lu
article en

Abstract

In reinforced concrete (RC) frames, appropriate infill-wall connections can mitigate detrimental frame-wall interaction and improve seismic response. This study proposes an RC frame with an assembled energy-dissipating infill wall (RCF-AEIW) using hollow T-shaped metal connectors. The system largely retains the layout, assembly, and construction procedures of conventional autoclaved lightweight concrete infill walls while adding an energy-dissipation mechanism. A finite element model is validated against published experiments and used for parametric and comparative analyses under static cyclic and dynamic time-history loading. Under static cyclic loading, RCF-AEIW increases load-carrying capacity and total accumulated energy by 32.07% and 81.73%, respectively, relative to the bare RC frame. Under the selected ground motion at a peak ground acceleration of 0.4 g, it reduces maximum interstory displacement by 12.5% relative to the traditional masonry-infilled frame. These preliminary numerical results indicate potential improvements in energy dissipation and deformation control under the investigated conditions.

Canadian Journal of Civil Engineering
Roma Tre University (IT), Hunan University of Science and Technology (CN), China State Construction Engineering (China) (CN)
Affordable and clean energy
Openalex Percentile: Top 17%
Masonry and Concrete Structural Analysis
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Seismic Performance of RC Frames with Assembled Energy-Dissipating Infill Walls Using Hollow T-Shaped Metal Connectors — Cristoforo Demartino, Carlotta Pia Contiguglia, et al. · Canadian Journal of Civil Engineering (2026) | TGRS Research Map | TGRS