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Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames

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2022
Authors
Marinković, Marko
Butenweg, Christoph
Article (Published version)
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Abstract
Damage of reinforced concrete (RC) frames with masonry infill walls has been observed after many earthquakes. Brittle behaviour of the masonry infills in combination with the ductile behaviour of the RC frames makes infill walls prone to damage during earthquakes. Interstory deformations lead to an interaction between the infill and the RC frame, which affects the structural response. The result of this interaction is significant damage to the infill wall and sometimes to the surrounding structural system too. In most design codes, infill walls are considered as non-structural elements and neglected in the design process, because taking into account the infills and considering the interaction between frame and infill in software packages can be complicated and impractical. A good way to avoid negative aspects arising from this behavior is to ensure no or low-interaction of the frame and infill wall, for instance by decoupling the infill from the frame. This paper presents the numerical... study performed to investigate new connection system called INODIS (Innovative Decoupled Infill System) for decoupling infill walls from surrounding frame with the aim to postpone infill activation to high interstory drifts thus reducing infill/frame interaction and minimizing damage to both infills and frames. The experimental results are first used for calibration and validation of the numerical model, which is then employed for investigating the influence of the material parameters as well as infill’s and frame’s geometry on the in-plane behaviour of the infilled frames with the INODIS system. For all the investigated situations, simulation results show significant improvements in behaviour for decoupled infilled RC frames in comparison to the traditionally infilled frames.

Keywords:
seismic loading / earthquake / in-plane performance / isolation / infill wall design / numerical modelling
Source:
Engineering Structures, 2022, 272

DOI: 10.1016/j.engstruct.2022.114959

ISSN: 0141-0296

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URI
https://grafar.grf.bg.ac.rs/handle/123456789/2783
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  • Radovi istraživača / Researcher's publications
  • Катедра за техничку механику и теорију конструкција
Institution/Community
GraFar
TY  - JOUR
AU  - Marinković, Marko
AU  - Butenweg, Christoph
PY  - 2022
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2783
AB  - Damage of reinforced concrete (RC) frames with masonry infill walls has been observed after many earthquakes. Brittle behaviour of the masonry infills in combination with the ductile behaviour of the RC frames makes infill walls prone to damage during earthquakes. Interstory deformations lead to an interaction between the infill and the RC frame, which affects the structural response. The result of this interaction is significant damage to the infill wall and sometimes to the surrounding structural system too. In most design codes, infill walls are considered as non-structural elements and neglected in the design process, because taking into account the infills and considering the interaction between frame and infill in software packages can be complicated and impractical. A good way to avoid negative aspects arising from this behavior is to ensure no or low-interaction of the frame and infill wall, for instance by decoupling the infill from the frame. This paper presents the numerical study performed to investigate new connection system called INODIS (Innovative Decoupled Infill System) for decoupling infill walls from surrounding frame with the aim to postpone infill activation to high interstory drifts thus reducing infill/frame interaction and minimizing damage to both infills and frames. The experimental results are first used for calibration and validation of the numerical model, which is then employed for investigating the influence of the material parameters as well as infill’s and frame’s geometry on the in-plane behaviour of the infilled frames with the INODIS system. For all the investigated situations, simulation results show significant improvements in behaviour for decoupled infilled RC frames in comparison to the traditionally infilled frames.
T2  - Engineering Structures
T1  - Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames
VL  - 272
DO  - 10.1016/j.engstruct.2022.114959
ER  - 
@article{
author = "Marinković, Marko and Butenweg, Christoph",
year = "2022",
abstract = "Damage of reinforced concrete (RC) frames with masonry infill walls has been observed after many earthquakes. Brittle behaviour of the masonry infills in combination with the ductile behaviour of the RC frames makes infill walls prone to damage during earthquakes. Interstory deformations lead to an interaction between the infill and the RC frame, which affects the structural response. The result of this interaction is significant damage to the infill wall and sometimes to the surrounding structural system too. In most design codes, infill walls are considered as non-structural elements and neglected in the design process, because taking into account the infills and considering the interaction between frame and infill in software packages can be complicated and impractical. A good way to avoid negative aspects arising from this behavior is to ensure no or low-interaction of the frame and infill wall, for instance by decoupling the infill from the frame. This paper presents the numerical study performed to investigate new connection system called INODIS (Innovative Decoupled Infill System) for decoupling infill walls from surrounding frame with the aim to postpone infill activation to high interstory drifts thus reducing infill/frame interaction and minimizing damage to both infills and frames. The experimental results are first used for calibration and validation of the numerical model, which is then employed for investigating the influence of the material parameters as well as infill’s and frame’s geometry on the in-plane behaviour of the infilled frames with the INODIS system. For all the investigated situations, simulation results show significant improvements in behaviour for decoupled infilled RC frames in comparison to the traditionally infilled frames.",
journal = "Engineering Structures",
title = "Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames",
volume = "272",
doi = "10.1016/j.engstruct.2022.114959"
}
Marinković, M.,& Butenweg, C.. (2022). Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames. in Engineering Structures, 272.
https://doi.org/10.1016/j.engstruct.2022.114959
Marinković M, Butenweg C. Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames. in Engineering Structures. 2022;272.
doi:10.1016/j.engstruct.2022.114959 .
Marinković, Marko, Butenweg, Christoph, "Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames" in Engineering Structures, 272 (2022),
https://doi.org/10.1016/j.engstruct.2022.114959 . .

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