Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings

This paper presents an overview of the experimental results obtained by combined in-plane/out-of-plane (IP/OOP) tests carried out on robust clay masonry infill walls. The combined tests were carried out on eight full-scale one-bay, one-story infilled reinforced concrete (RC) frames, plus one referen...

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Main Authors: Francesca da Porto, Marco Donà, Nicolò Verlato, Giovanni Guidi
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-12-01
Series:Frontiers in Built Environment
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fbuil.2020.591985/full
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spelling doaj-16d642fb7c7e4623bf32401a3a76a8892020-12-11T16:02:37ZengFrontiers Media S.A.Frontiers in Built Environment2297-33622020-12-01610.3389/fbuil.2020.591985591985Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without OpeningsFrancesca da Porto0Marco Donà1Nicolò Verlato2Giovanni Guidi3Department of Geosciences, University of Padova, Padova, ItalyEarthquake Engineering Research and Test Center, Guangzhou University, Guangzhou, ChinaDepartment of Geosciences, University of Padova, Padova, ItalyFacility and Energy Management Office, University of Padova, Padova, ItalyThis paper presents an overview of the experimental results obtained by combined in-plane/out-of-plane (IP/OOP) tests carried out on robust clay masonry infill walls. The combined tests were carried out on eight full-scale one-bay, one-story infilled reinforced concrete (RC) frames, plus one reference RC bare frame. In four cases, the masonry walls fully fill the RC frame: two walls are made of unreinforced masonry (URM), whereas the other two are made of reinforced masonry (RM), with both vertical and horizontal reinforcement. Each pair of specimens was tested up to different levels of IP drift before carrying out the OOP tests. Four other specimens, still made of URM and RM walls, are characterized by the presence of a central opening, and in one case, the effect of a lintel is analyzed. On the basis of the tests carried out, an analytical model was developed for the analysis of the OOP behavior. It was used to calibrate IP damage degradation models based on the experimental results to define limits for the applicability of well-known flexural and arching mechanism models for the evaluation of the OOP capacity of the infill walls and to evaluate the efficiency of vertical reinforcement. In this work, the experimental campaign is presented, and the results of both experimental tests and numerical analyses are discussed.https://www.frontiersin.org/articles/10.3389/fbuil.2020.591985/fullclay masonry infillsunreinforced and reinforced masonryinfills with openingsinfilled RC framesexperimental testscombined in-plane/out-of-plane behavior
collection DOAJ
language English
format Article
sources DOAJ
author Francesca da Porto
Marco Donà
Nicolò Verlato
Giovanni Guidi
spellingShingle Francesca da Porto
Marco Donà
Nicolò Verlato
Giovanni Guidi
Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
Frontiers in Built Environment
clay masonry infills
unreinforced and reinforced masonry
infills with openings
infilled RC frames
experimental tests
combined in-plane/out-of-plane behavior
author_facet Francesca da Porto
Marco Donà
Nicolò Verlato
Giovanni Guidi
author_sort Francesca da Porto
title Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
title_short Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
title_full Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
title_fullStr Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
title_full_unstemmed Experimental Testing and Numerical Modeling of Robust Unreinforced and Reinforced Clay Masonry Infill Walls, With and Without Openings
title_sort experimental testing and numerical modeling of robust unreinforced and reinforced clay masonry infill walls, with and without openings
publisher Frontiers Media S.A.
series Frontiers in Built Environment
issn 2297-3362
publishDate 2020-12-01
description This paper presents an overview of the experimental results obtained by combined in-plane/out-of-plane (IP/OOP) tests carried out on robust clay masonry infill walls. The combined tests were carried out on eight full-scale one-bay, one-story infilled reinforced concrete (RC) frames, plus one reference RC bare frame. In four cases, the masonry walls fully fill the RC frame: two walls are made of unreinforced masonry (URM), whereas the other two are made of reinforced masonry (RM), with both vertical and horizontal reinforcement. Each pair of specimens was tested up to different levels of IP drift before carrying out the OOP tests. Four other specimens, still made of URM and RM walls, are characterized by the presence of a central opening, and in one case, the effect of a lintel is analyzed. On the basis of the tests carried out, an analytical model was developed for the analysis of the OOP behavior. It was used to calibrate IP damage degradation models based on the experimental results to define limits for the applicability of well-known flexural and arching mechanism models for the evaluation of the OOP capacity of the infill walls and to evaluate the efficiency of vertical reinforcement. In this work, the experimental campaign is presented, and the results of both experimental tests and numerical analyses are discussed.
topic clay masonry infills
unreinforced and reinforced masonry
infills with openings
infilled RC frames
experimental tests
combined in-plane/out-of-plane behavior
url https://www.frontiersin.org/articles/10.3389/fbuil.2020.591985/full
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