Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load

At present, research on prefabricated piers is limited to the axial compression state. However, many piers are under small eccentric compression in practical engineering. In this article, the seismic performance of ultrahigh performance concrete (UHPC)-grouted corrugated pipe-connected piers under s...

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Main Authors: Ben Zeng, Jiahui Xu, Xiaohong Zheng, Songqi Zhang
Format: Article
Language:English
Published: Hindawi Limited 2023-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2023/9092697
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author Ben Zeng
Jiahui Xu
Xiaohong Zheng
Songqi Zhang
author_facet Ben Zeng
Jiahui Xu
Xiaohong Zheng
Songqi Zhang
author_sort Ben Zeng
collection DOAJ
description At present, research on prefabricated piers is limited to the axial compression state. However, many piers are under small eccentric compression in practical engineering. In this article, the seismic performance of ultrahigh performance concrete (UHPC)-grouted corrugated pipe-connected piers under small eccentric compression was studied. A pseudostatic test was carried out by using a prefabricated pier column model connected with UHPC-grouted corrugated pipes. The failure mechanism of the plastic hinge area of the column base was studied, and the failure mode, energy dissipation capacity, displacement ductility, and ultimate bearing capacity were compared with those of an ordinary axially compressed pier column structure. The result shows that compared to the conventional cast-in-place(CIP) pier, the overall energy dissipation capacity and the ductility factor of assembled pier with UHPC-grouted corrugated pipe-connection were decreased approximately by 5.0% and by 10%, respectively. The pinching phenomenon of the hysteresis curve of the precast pier was more obvious. When the assembled piers were under small eccentric compression, the overall energy dissipation capacity was close to that of conventional CIP piers and the ductility factor was improved by 20%. Comparison of two precast piers using the same UHPC grout connections shows that the stiffness degradation process of precast pier under small eccentric compression was similar to that under axial compression. But the ductility coefficient of precast pier under small eccentric compression increased by about 20%. The small eccentric compression caused different damage degrees in the plastic hinge zone at the bottom of the precast column. The ultimate load in the same direction as the additional bending moment was 55% lower than that of the opposite direction.
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spelling doaj.art-0c98dfa6214a4cd2886db1540239381c2023-03-13T11:25:41ZengHindawi LimitedAdvances in Civil Engineering1687-80942023-01-01202310.1155/2023/9092697Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric LoadBen Zeng0Jiahui Xu1Xiaohong Zheng2Songqi Zhang3Guangzhou Urban Planning and Design Survey Research InstituteGuangzhou Urban Planning and Design Survey Research InstituteSchool of Civil Engineering and TransportationGuangzhou Metro Construction Management Co., Ltd.At present, research on prefabricated piers is limited to the axial compression state. However, many piers are under small eccentric compression in practical engineering. In this article, the seismic performance of ultrahigh performance concrete (UHPC)-grouted corrugated pipe-connected piers under small eccentric compression was studied. A pseudostatic test was carried out by using a prefabricated pier column model connected with UHPC-grouted corrugated pipes. The failure mechanism of the plastic hinge area of the column base was studied, and the failure mode, energy dissipation capacity, displacement ductility, and ultimate bearing capacity were compared with those of an ordinary axially compressed pier column structure. The result shows that compared to the conventional cast-in-place(CIP) pier, the overall energy dissipation capacity and the ductility factor of assembled pier with UHPC-grouted corrugated pipe-connection were decreased approximately by 5.0% and by 10%, respectively. The pinching phenomenon of the hysteresis curve of the precast pier was more obvious. When the assembled piers were under small eccentric compression, the overall energy dissipation capacity was close to that of conventional CIP piers and the ductility factor was improved by 20%. Comparison of two precast piers using the same UHPC grout connections shows that the stiffness degradation process of precast pier under small eccentric compression was similar to that under axial compression. But the ductility coefficient of precast pier under small eccentric compression increased by about 20%. The small eccentric compression caused different damage degrees in the plastic hinge zone at the bottom of the precast column. The ultimate load in the same direction as the additional bending moment was 55% lower than that of the opposite direction.http://dx.doi.org/10.1155/2023/9092697
spellingShingle Ben Zeng
Jiahui Xu
Xiaohong Zheng
Songqi Zhang
Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
Advances in Civil Engineering
title Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
title_full Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
title_fullStr Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
title_full_unstemmed Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
title_short Research on the Seismic Performance of Prefabricated Bridge Piers Using UHPC Grout under an Eccentric Load
title_sort research on the seismic performance of prefabricated bridge piers using uhpc grout under an eccentric load
url http://dx.doi.org/10.1155/2023/9092697
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