Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls

Following the observation of severe damage to structurally isolated non-structural reinforced concrete walls after major earthquakes, researchers began to reassess the effectiveness and connection detail of non-structural walls to moment-resisting frames. A method to control damages to the non-struc...

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Main Authors: Walid Ahmad Safi, Yo Hibino, Koichi Kusunoki, Yasushi Sanada, Tomohisa Mukai
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Buildings
Subjects:
Online Access:https://www.mdpi.com/2075-5309/10/5/89
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spelling doaj-da49fcaef1e741bc97465f0ae0a515522020-11-25T03:32:06ZengMDPI AGBuildings2075-53092020-05-0110898910.3390/buildings10050089Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural WallsWalid Ahmad Safi0Yo Hibino1Koichi Kusunoki2Yasushi Sanada3Tomohisa Mukai4Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima 739-8527, JapanGraduate School of Environmental Studies, Nagoya University, Nagoya 464-8603, JapanEarthquake Research Institute, The University of Tokyo, Bunkyo-ku 113-0032, JapanGraduate School of Engineering, Osaka University, Suita 565-0871, JapanBuilding Research institute, Tsukuba 305-0802, JapanFollowing the observation of severe damage to structurally isolated non-structural reinforced concrete walls after major earthquakes, researchers began to reassess the effectiveness and connection detail of non-structural walls to moment-resisting frames. A method to control damages to the non-structural wall, is to cast exterior non-structural concrete wall elements to be monolithic with frame elements, without anchoring the wall longitudinal bar. The non-anchorage of the wall longitudinal bar significantly increases the drift capacity of the wall and decreases damage. Using an experimental approach, this study assesses the influence of reinforcement detailing and quantity of the transverse reinforcements on the strength and drift capacity of the non-structural hanging wall. This study further evaluates the workability mechanism of the transverse reinforcements and reinforcement detailing with concrete. The non-anchorage of hanging walls, having boundary confinements, was found to exhibit a higher drift and strength capacity than similar walls with the anchored detailing without boundary confinements. The strength capacity of the anchored detailing hanging walls with minimum amounts of reinforcements was higher than that of the non-anchored specimen. The boundary confinements were found to be more influential on the capability of the hanging wall when placed along with non-anchored detailing reinforcement.https://www.mdpi.com/2075-5309/10/5/89non-structural wallflexural strengthdrift capacityboundary confinementtransverse reinforcementseismic design
collection DOAJ
language English
format Article
sources DOAJ
author Walid Ahmad Safi
Yo Hibino
Koichi Kusunoki
Yasushi Sanada
Tomohisa Mukai
spellingShingle Walid Ahmad Safi
Yo Hibino
Koichi Kusunoki
Yasushi Sanada
Tomohisa Mukai
Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
Buildings
non-structural wall
flexural strength
drift capacity
boundary confinement
transverse reinforcement
seismic design
author_facet Walid Ahmad Safi
Yo Hibino
Koichi Kusunoki
Yasushi Sanada
Tomohisa Mukai
author_sort Walid Ahmad Safi
title Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
title_short Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
title_full Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
title_fullStr Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
title_full_unstemmed Impact of the Reinforcement Detailing on Seismic Performance of Isolated Non-structural Walls
title_sort impact of the reinforcement detailing on seismic performance of isolated non-structural walls
publisher MDPI AG
series Buildings
issn 2075-5309
publishDate 2020-05-01
description Following the observation of severe damage to structurally isolated non-structural reinforced concrete walls after major earthquakes, researchers began to reassess the effectiveness and connection detail of non-structural walls to moment-resisting frames. A method to control damages to the non-structural wall, is to cast exterior non-structural concrete wall elements to be monolithic with frame elements, without anchoring the wall longitudinal bar. The non-anchorage of the wall longitudinal bar significantly increases the drift capacity of the wall and decreases damage. Using an experimental approach, this study assesses the influence of reinforcement detailing and quantity of the transverse reinforcements on the strength and drift capacity of the non-structural hanging wall. This study further evaluates the workability mechanism of the transverse reinforcements and reinforcement detailing with concrete. The non-anchorage of hanging walls, having boundary confinements, was found to exhibit a higher drift and strength capacity than similar walls with the anchored detailing without boundary confinements. The strength capacity of the anchored detailing hanging walls with minimum amounts of reinforcements was higher than that of the non-anchored specimen. The boundary confinements were found to be more influential on the capability of the hanging wall when placed along with non-anchored detailing reinforcement.
topic non-structural wall
flexural strength
drift capacity
boundary confinement
transverse reinforcement
seismic design
url https://www.mdpi.com/2075-5309/10/5/89
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