Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review

The performance of precast concrete frame structures against seismic loads mainly depends on the beam-to-column connection. A ductile hybrid connection consists of unbonded post-tensioning steel and bonded reinforcement bars, both of which provide overall moment resistance to the frame. Post-tension...

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Main Authors: Khaleel Mohammed, M Jameel, Zainah Ibrahim, Chee Ghuan Tan
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/16/7497
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spelling doaj-b835e4695d164fb787e4d268f74a6b482021-08-26T13:30:15ZengMDPI AGApplied Sciences2076-34172021-08-01117497749710.3390/app11167497Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A ReviewKhaleel Mohammed0M Jameel1Zainah Ibrahim2Chee Ghuan Tan3Department of Civil Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, MalaysiaDepartment of Civil Engineering, College of Engineering, King Khalid University, Asir, Abha 61421, Saudi ArabiaDepartment of Civil Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, MalaysiaDepartment of Civil Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, MalaysiaThe performance of precast concrete frame structures against seismic loads mainly depends on the beam-to-column connection. A ductile hybrid connection consists of unbonded post-tensioning steel and bonded reinforcement bars, both of which provide overall moment resistance to the frame. Post-tensioning steel acts as a restoring force which brings the structure back to its initial position upon unloading. Mild steel acts as an energy dissipator which yields in tension and compression. To evaluate the performance of precast frame structures, the structural engineer requires extensive knowledge of the complex nonlinear behavior of the connection. Standardization to mass produce is one of the benefits of precast construction, but with standardization in design there is severe risk. All previous earthquakes have clearly shown that continuous repetition of accepted practice without proper engineering review can lead to disaster. It is important to understand how different parameters of the connection influence the behavior and performance of the frame against seismic loads. The present study helps structural engineers and researchers with a detailed review of hybrid post-tensioned connections. This review is focused mainly on precast beam-to-column connections, studies on the development of hybrid connections, performance evaluations of hybrid connections, and the performance evaluation of precast frames with hybrid connections.https://www.mdpi.com/2076-3417/11/16/7497beam-to-column connectionpost-tensioned frameself-centeringindustrial building structuresductile connectionsprecast hybrid connection
collection DOAJ
language English
format Article
sources DOAJ
author Khaleel Mohammed
M Jameel
Zainah Ibrahim
Chee Ghuan Tan
spellingShingle Khaleel Mohammed
M Jameel
Zainah Ibrahim
Chee Ghuan Tan
Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
Applied Sciences
beam-to-column connection
post-tensioned frame
self-centering
industrial building structures
ductile connections
precast hybrid connection
author_facet Khaleel Mohammed
M Jameel
Zainah Ibrahim
Chee Ghuan Tan
author_sort Khaleel Mohammed
title Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
title_short Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
title_full Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
title_fullStr Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
title_full_unstemmed Performance of a Ductile Hybrid Post-Tensioned Beam-to-Column Connection for Precast Concrete Frames under Seismic Loads: A Review
title_sort performance of a ductile hybrid post-tensioned beam-to-column connection for precast concrete frames under seismic loads: a review
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-08-01
description The performance of precast concrete frame structures against seismic loads mainly depends on the beam-to-column connection. A ductile hybrid connection consists of unbonded post-tensioning steel and bonded reinforcement bars, both of which provide overall moment resistance to the frame. Post-tensioning steel acts as a restoring force which brings the structure back to its initial position upon unloading. Mild steel acts as an energy dissipator which yields in tension and compression. To evaluate the performance of precast frame structures, the structural engineer requires extensive knowledge of the complex nonlinear behavior of the connection. Standardization to mass produce is one of the benefits of precast construction, but with standardization in design there is severe risk. All previous earthquakes have clearly shown that continuous repetition of accepted practice without proper engineering review can lead to disaster. It is important to understand how different parameters of the connection influence the behavior and performance of the frame against seismic loads. The present study helps structural engineers and researchers with a detailed review of hybrid post-tensioned connections. This review is focused mainly on precast beam-to-column connections, studies on the development of hybrid connections, performance evaluations of hybrid connections, and the performance evaluation of precast frames with hybrid connections.
topic beam-to-column connection
post-tensioned frame
self-centering
industrial building structures
ductile connections
precast hybrid connection
url https://www.mdpi.com/2076-3417/11/16/7497
work_keys_str_mv AT khaleelmohammed performanceofaductilehybridposttensionedbeamtocolumnconnectionforprecastconcreteframesunderseismicloadsareview
AT mjameel performanceofaductilehybridposttensionedbeamtocolumnconnectionforprecastconcreteframesunderseismicloadsareview
AT zainahibrahim performanceofaductilehybridposttensionedbeamtocolumnconnectionforprecastconcreteframesunderseismicloadsareview
AT cheeghuantan performanceofaductilehybridposttensionedbeamtocolumnconnectionforprecastconcreteframesunderseismicloadsareview
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