Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures

This paper proposes a site-bolted connection that is suitable for modularized prefabricated steel structures. Excellent ductility is achieved by various structural measures. Six connection specimens with different parameters were subjected to quasi-static loading tests and finite element analysis (F...

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Main Authors: Xuechun Liu, Xiaoxiong Cui, Zhiwei Yang, Xinxin Zhan
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2017/1932730
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spelling doaj-8e9db7d8c08a48f9a110579238db87a82020-11-24T23:18:45ZengHindawi LimitedAdvances in Materials Science and Engineering1687-84341687-84422017-01-01201710.1155/2017/19327301932730Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel StructuresXuechun Liu0Xiaoxiong Cui1Zhiwei Yang2Xinxin Zhan3Beijing Engineering Research Center of High-Rise and Large-Span Prestressed Steel Structures, Beijing University of Technology, Beijing 100124, ChinaBeijing Engineering Research Center of High-Rise and Large-Span Prestressed Steel Structures, Beijing University of Technology, Beijing 100124, ChinaBeijing Engineering Research Center of High-Rise and Large-Span Prestressed Steel Structures, Beijing University of Technology, Beijing 100124, ChinaBeijing Engineering Research Center of High-Rise and Large-Span Prestressed Steel Structures, Beijing University of Technology, Beijing 100124, ChinaThis paper proposes a site-bolted connection that is suitable for modularized prefabricated steel structures. Excellent ductility is achieved by various structural measures. Six connection specimens with different parameters were subjected to quasi-static loading tests and finite element analysis (FEA) to determine the seismic performance of the proposed connection (e.g., hysteretic behavior, skeleton curve, ductility, and failure mode). The results of the tests and FEA showed that the connection underwent sufficient plastic deformation under cyclic loading and that its ultimate rotation angle could reach 0.09 rad. A clear plastic hinge formed on the beam before the connection failed, which suggests a ductile failure mode. The connection exhibited a wide hysteresis loop, which indicated good seismic performance. The results also showed that the connection does not slip under small earthquakes and could dissipate energy through slippage in the connection region under a moderate earthquake and through slippage in the connection region as well as plastic deformation at the beam end under a severe earthquake. The number of bolts was the main parameter that affected the seismic performance of the connection. The test and FEA results demonstrated that all six specimens had excellent seismic and ductile performance and an exceptional plastic rotation capacity.http://dx.doi.org/10.1155/2017/1932730
collection DOAJ
language English
format Article
sources DOAJ
author Xuechun Liu
Xiaoxiong Cui
Zhiwei Yang
Xinxin Zhan
spellingShingle Xuechun Liu
Xiaoxiong Cui
Zhiwei Yang
Xinxin Zhan
Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
Advances in Materials Science and Engineering
author_facet Xuechun Liu
Xiaoxiong Cui
Zhiwei Yang
Xinxin Zhan
author_sort Xuechun Liu
title Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
title_short Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
title_full Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
title_fullStr Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
title_full_unstemmed Analysis of the Seismic Performance of Site-Bolted Beam to Column Connections in Modularized Prefabricated Steel Structures
title_sort analysis of the seismic performance of site-bolted beam to column connections in modularized prefabricated steel structures
publisher Hindawi Limited
series Advances in Materials Science and Engineering
issn 1687-8434
1687-8442
publishDate 2017-01-01
description This paper proposes a site-bolted connection that is suitable for modularized prefabricated steel structures. Excellent ductility is achieved by various structural measures. Six connection specimens with different parameters were subjected to quasi-static loading tests and finite element analysis (FEA) to determine the seismic performance of the proposed connection (e.g., hysteretic behavior, skeleton curve, ductility, and failure mode). The results of the tests and FEA showed that the connection underwent sufficient plastic deformation under cyclic loading and that its ultimate rotation angle could reach 0.09 rad. A clear plastic hinge formed on the beam before the connection failed, which suggests a ductile failure mode. The connection exhibited a wide hysteresis loop, which indicated good seismic performance. The results also showed that the connection does not slip under small earthquakes and could dissipate energy through slippage in the connection region under a moderate earthquake and through slippage in the connection region as well as plastic deformation at the beam end under a severe earthquake. The number of bolts was the main parameter that affected the seismic performance of the connection. The test and FEA results demonstrated that all six specimens had excellent seismic and ductile performance and an exceptional plastic rotation capacity.
url http://dx.doi.org/10.1155/2017/1932730
work_keys_str_mv AT xuechunliu analysisoftheseismicperformanceofsiteboltedbeamtocolumnconnectionsinmodularizedprefabricatedsteelstructures
AT xiaoxiongcui analysisoftheseismicperformanceofsiteboltedbeamtocolumnconnectionsinmodularizedprefabricatedsteelstructures
AT zhiweiyang analysisoftheseismicperformanceofsiteboltedbeamtocolumnconnectionsinmodularizedprefabricatedsteelstructures
AT xinxinzhan analysisoftheseismicperformanceofsiteboltedbeamtocolumnconnectionsinmodularizedprefabricatedsteelstructures
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