A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints

The study presents a numerical investigation on exterior reinforced concrete (RC) beam-column joints under seismic actions based on a macro-modelling approach proposed by the authors in a recent paper. The followed approach makes use of the well-known “scissors model” where two nonlinear rotational...

Full description

Bibliographic Details
Main Authors: Ernesto Grande, Maura Imbimbo, Annalisa Napoli, Riccardo Nitiffi, Roberto Realfonzo
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-07-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmats.2021.719716/full
id doaj-df2aec006abb49108a3e27f02cf4158a
record_format Article
spelling doaj-df2aec006abb49108a3e27f02cf4158a2021-07-29T06:58:42ZengFrontiers Media S.A.Frontiers in Materials2296-80162021-07-01810.3389/fmats.2021.719716719716A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column JointsErnesto Grande0Maura Imbimbo1Annalisa Napoli2Riccardo Nitiffi3Roberto Realfonzo4Department of Engineering Sciences, University Guglielmo Marconi, Roma, ItalyDepartment of Civil and Mechanical Engineering, University of Cassino and Southern Lazio, Cassino (FR), ItalyDepartment of Civil Engineering, University of Salerno, Fisciano (SA), ItalyDepartment of Civil and Mechanical Engineering, University of Cassino and Southern Lazio, Cassino (FR), ItalyDepartment of Civil Engineering, University of Salerno, Fisciano (SA), ItalyThe study presents a numerical investigation on exterior reinforced concrete (RC) beam-column joints under seismic actions based on a macro-modelling approach proposed by the authors in a recent paper. The followed approach makes use of the well-known “scissors model” where two nonlinear rotational springs arranged in series were introduced to schematize the shear behavior of the joint panel and, moreover, the possible occurrence of the debonding of longitudinal steel rebars at the beam-joint interface. In this paper, the scissor model is employed in the context of a novel predictive approach with the twofold objective to: 1) develop a new model for the estimate of the maximum shear strength of RC joints by performing a multivariate linear regression analysis on a set of experimental tests and, 2) define a new multilinear backbone joint shear stress-strain law to be assigned to one of the mentioned springs. In particular, the identification of the shear strain parameters is obtained by performing a sensitivity analysis in which a number of monotonic load-drift numerical curves are derived by varying the strain values in ranges opportunely a-priori defined and compared with the experimental ones to investigate their accuracy. Finally, cyclic analyses on RC joints collected in the experimental database are carried out by considering the backbone joint shear stress-strain law identified in the calibration process. The analyses are performed by using the nonlinear open-source finite element platform, OpenSees, in which the “pinching4” uniaxial material model, available in the software library, is implemented to set the parameters governing the hysteresis rules and pinching effect. To this purpose, five literature proposals suggesting the values to use for such parameters are taken into account and their assessment is presented in the paper. The obtained outcomes have allowed, on the one hand, to identify the proposal providing the best numerical simulations of the experimental results and, on the other end, to draw useful indications on how to further improve the cyclic modelling by opportunely modifying the setting of the “pinching4” material model parameters.https://www.frontiersin.org/articles/10.3389/fmats.2021.719716/fullRC beam-column jointsshear capacitynumerical non-linear analysiscyclic loadingpinching parametersOpenSees code
collection DOAJ
language English
format Article
sources DOAJ
author Ernesto Grande
Maura Imbimbo
Annalisa Napoli
Riccardo Nitiffi
Roberto Realfonzo
spellingShingle Ernesto Grande
Maura Imbimbo
Annalisa Napoli
Riccardo Nitiffi
Roberto Realfonzo
A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
Frontiers in Materials
RC beam-column joints
shear capacity
numerical non-linear analysis
cyclic loading
pinching parameters
OpenSees code
author_facet Ernesto Grande
Maura Imbimbo
Annalisa Napoli
Riccardo Nitiffi
Roberto Realfonzo
author_sort Ernesto Grande
title A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
title_short A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
title_full A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
title_fullStr A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
title_full_unstemmed A Nonlinear Macro-Model for the Analysis of Monotonic and Cyclic Behaviour of Exterior RC Beam-Column Joints
title_sort nonlinear macro-model for the analysis of monotonic and cyclic behaviour of exterior rc beam-column joints
publisher Frontiers Media S.A.
series Frontiers in Materials
issn 2296-8016
publishDate 2021-07-01
description The study presents a numerical investigation on exterior reinforced concrete (RC) beam-column joints under seismic actions based on a macro-modelling approach proposed by the authors in a recent paper. The followed approach makes use of the well-known “scissors model” where two nonlinear rotational springs arranged in series were introduced to schematize the shear behavior of the joint panel and, moreover, the possible occurrence of the debonding of longitudinal steel rebars at the beam-joint interface. In this paper, the scissor model is employed in the context of a novel predictive approach with the twofold objective to: 1) develop a new model for the estimate of the maximum shear strength of RC joints by performing a multivariate linear regression analysis on a set of experimental tests and, 2) define a new multilinear backbone joint shear stress-strain law to be assigned to one of the mentioned springs. In particular, the identification of the shear strain parameters is obtained by performing a sensitivity analysis in which a number of monotonic load-drift numerical curves are derived by varying the strain values in ranges opportunely a-priori defined and compared with the experimental ones to investigate their accuracy. Finally, cyclic analyses on RC joints collected in the experimental database are carried out by considering the backbone joint shear stress-strain law identified in the calibration process. The analyses are performed by using the nonlinear open-source finite element platform, OpenSees, in which the “pinching4” uniaxial material model, available in the software library, is implemented to set the parameters governing the hysteresis rules and pinching effect. To this purpose, five literature proposals suggesting the values to use for such parameters are taken into account and their assessment is presented in the paper. The obtained outcomes have allowed, on the one hand, to identify the proposal providing the best numerical simulations of the experimental results and, on the other end, to draw useful indications on how to further improve the cyclic modelling by opportunely modifying the setting of the “pinching4” material model parameters.
topic RC beam-column joints
shear capacity
numerical non-linear analysis
cyclic loading
pinching parameters
OpenSees code
url https://www.frontiersin.org/articles/10.3389/fmats.2021.719716/full
work_keys_str_mv AT ernestogrande anonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT mauraimbimbo anonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT annalisanapoli anonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT riccardonitiffi anonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT robertorealfonzo anonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT ernestogrande nonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT mauraimbimbo nonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT annalisanapoli nonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT riccardonitiffi nonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
AT robertorealfonzo nonlinearmacromodelfortheanalysisofmonotonicandcyclicbehaviourofexteriorrcbeamcolumnjoints
_version_ 1721259315175620608