Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves

Based on the monotonic tensile test of grouted sleeve specimens conducted, this paper uses multifactor regression analysis to construct the equivalent constitutive relationship of grouted sleeve specimens under uniaxial tension. The study based on this constitutive relationship of grouted sleeves an...

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Main Authors: Xiaoyong Luo, Hao Long, Ya Ou, Shuang Dong
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2021/5553820
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author Xiaoyong Luo
Hao Long
Ya Ou
Shuang Dong
author_facet Xiaoyong Luo
Hao Long
Ya Ou
Shuang Dong
author_sort Xiaoyong Luo
collection DOAJ
description Based on the monotonic tensile test of grouted sleeve specimens conducted, this paper uses multifactor regression analysis to construct the equivalent constitutive relationship of grouted sleeve specimens under uniaxial tension. The study based on this constitutive relationship of grouted sleeves and the effect of bond and slip between steel and concrete were considered. The prefabricated reinforced concreted beam-column joints with grouted sleeves were presented with finite element software ABAQUS. The seismic behavior of prefabricated reinforced concreted beam-column joints with grouted sleeves under low-frequency cyclic loading was then investigated. In addition, parametric studies via finite element analysis were performed to examine the influence of various parameters on the strength and energy dissipation capacity of the specimens. The simulation results show that plastic deformation was mainly observed near the beam-column interface; the hysteretic curve of this joint was plump. The test results showed that good energy dissipation and displacement ductility capacities can be achieved. The error of yield load between the numerical simulated and experimental result was 7.11%, the error of peak load was 6.88%, the error of ultimate load was 3.76%, and the error of displacement ductility was 7.84%. Results showed that the calculated results obtained in the paper agree well with test results from the references. The finite element model adopted in this paper can reflect the seismic behavior of the prefabricated reinforced concrete beam-column joints with grouted sleeves by using equivalent constitutive relation.
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publisher Wiley
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spelling doaj-art-7bbbd556dcc044bc88ae99e4f58768fd2025-08-20T02:06:54ZengWileyAdvances in Civil Engineering1687-80861687-80942021-01-01202110.1155/2021/55538205553820Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted SleevesXiaoyong Luo0Hao Long1Ya Ou2Shuang Dong3School of Civil Engineering, Central South University, Changsha 41000, ChinaSchool of Civil Engineering, Central South University, Changsha 41000, ChinaSchool of Civil Engineering, Central South University of Forestry and Technology, Changsha 41000, ChinaSchool of Civil Engineering, Central South University, Changsha 41000, ChinaBased on the monotonic tensile test of grouted sleeve specimens conducted, this paper uses multifactor regression analysis to construct the equivalent constitutive relationship of grouted sleeve specimens under uniaxial tension. The study based on this constitutive relationship of grouted sleeves and the effect of bond and slip between steel and concrete were considered. The prefabricated reinforced concreted beam-column joints with grouted sleeves were presented with finite element software ABAQUS. The seismic behavior of prefabricated reinforced concreted beam-column joints with grouted sleeves under low-frequency cyclic loading was then investigated. In addition, parametric studies via finite element analysis were performed to examine the influence of various parameters on the strength and energy dissipation capacity of the specimens. The simulation results show that plastic deformation was mainly observed near the beam-column interface; the hysteretic curve of this joint was plump. The test results showed that good energy dissipation and displacement ductility capacities can be achieved. The error of yield load between the numerical simulated and experimental result was 7.11%, the error of peak load was 6.88%, the error of ultimate load was 3.76%, and the error of displacement ductility was 7.84%. Results showed that the calculated results obtained in the paper agree well with test results from the references. The finite element model adopted in this paper can reflect the seismic behavior of the prefabricated reinforced concrete beam-column joints with grouted sleeves by using equivalent constitutive relation.http://dx.doi.org/10.1155/2021/5553820
spellingShingle Xiaoyong Luo
Hao Long
Ya Ou
Shuang Dong
Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
Advances in Civil Engineering
title Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
title_full Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
title_fullStr Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
title_full_unstemmed Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
title_short Study on Finite Element Model of the Prefabricated Reinforced Concrete Beam-Column Joints with Grouted Sleeves
title_sort study on finite element model of the prefabricated reinforced concrete beam column joints with grouted sleeves
url http://dx.doi.org/10.1155/2021/5553820
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AT haolong studyonfiniteelementmodeloftheprefabricatedreinforcedconcretebeamcolumnjointswithgroutedsleeves
AT yaou studyonfiniteelementmodeloftheprefabricatedreinforcedconcretebeamcolumnjointswithgroutedsleeves
AT shuangdong studyonfiniteelementmodeloftheprefabricatedreinforcedconcretebeamcolumnjointswithgroutedsleeves