A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber

This paper discusses the concept of self-consolidating concrete mix with Alccofine-1203, superplasticizer, viscosity modification agent, crimped steel fiber on the RC beam column joint. Totally, eight reinforced-concrete (RC) column joints with M25 grade concrete were considered in this study. Out o...

Full description

Saved in:
Bibliographic Details
Main Authors: G. Vimal Arokiaraj, G. Elangovan
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2022/7874066
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832549764927848448
author G. Vimal Arokiaraj
G. Elangovan
author_facet G. Vimal Arokiaraj
G. Elangovan
author_sort G. Vimal Arokiaraj
collection DOAJ
description This paper discusses the concept of self-consolidating concrete mix with Alccofine-1203, superplasticizer, viscosity modification agent, crimped steel fiber on the RC beam column joint. Totally, eight reinforced-concrete (RC) column joints with M25 grade concrete were considered in this study. Out of eight RC beam column joints, two beam column joints served as Alccofine, two beam column joint specimens served as Alccofine 5%, two beam column joint specimens served as Alccofine-10%, and two beam column joint specimens served as Alccofine-15%. All the RC beam column joint specimens were tested under the compression until failure in the loading frame of 2000 kN capacity. The test results of Alccofine-10% showed the higher loading capacity than that of Alccofine-5% and Alccofine-15% in self-consolidating concrete RC beam column joints. The percentage of superplasticizer, viscosity modification agent, and crimped steel fiber is maintained. Nonlinear finite element analysis (FEA) to analyse the beam column joint through nonlinear finite element modelling (NLFEM) and the modelling results were compared from the experimental results. The results obtained through ANSYS modelling show good agreement with the experimented results. The deflection ductility of experimental results shows 1.57, and the predicted deflection ductility shows 1.59 in beam column joint with Alccofine-10%. ANSYS software is validated as appropriate software to predict the study parameters of self-consolidation concrete in beam column joints.
format Article
id doaj-art-fc2fef09378443f0b66d5b6575fa9d74
institution Kabale University
issn 1687-8094
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Advances in Civil Engineering
spelling doaj-art-fc2fef09378443f0b66d5b6575fa9d742025-02-03T06:08:44ZengWileyAdvances in Civil Engineering1687-80942022-01-01202210.1155/2022/7874066A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel FiberG. Vimal Arokiaraj0G. Elangovan1Department of Civil EngineeringDepartment of Civil EngineeringThis paper discusses the concept of self-consolidating concrete mix with Alccofine-1203, superplasticizer, viscosity modification agent, crimped steel fiber on the RC beam column joint. Totally, eight reinforced-concrete (RC) column joints with M25 grade concrete were considered in this study. Out of eight RC beam column joints, two beam column joints served as Alccofine, two beam column joint specimens served as Alccofine 5%, two beam column joint specimens served as Alccofine-10%, and two beam column joint specimens served as Alccofine-15%. All the RC beam column joint specimens were tested under the compression until failure in the loading frame of 2000 kN capacity. The test results of Alccofine-10% showed the higher loading capacity than that of Alccofine-5% and Alccofine-15% in self-consolidating concrete RC beam column joints. The percentage of superplasticizer, viscosity modification agent, and crimped steel fiber is maintained. Nonlinear finite element analysis (FEA) to analyse the beam column joint through nonlinear finite element modelling (NLFEM) and the modelling results were compared from the experimental results. The results obtained through ANSYS modelling show good agreement with the experimented results. The deflection ductility of experimental results shows 1.57, and the predicted deflection ductility shows 1.59 in beam column joint with Alccofine-10%. ANSYS software is validated as appropriate software to predict the study parameters of self-consolidation concrete in beam column joints.http://dx.doi.org/10.1155/2022/7874066
spellingShingle G. Vimal Arokiaraj
G. Elangovan
A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
Advances in Civil Engineering
title A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
title_full A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
title_fullStr A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
title_full_unstemmed A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
title_short A Study on Self-Consolidate Concrete in Experimental Reinforced-Concrete Beam Column Structures with Alccofine and Steel Fiber
title_sort study on self consolidate concrete in experimental reinforced concrete beam column structures with alccofine and steel fiber
url http://dx.doi.org/10.1155/2022/7874066
work_keys_str_mv AT gvimalarokiaraj astudyonselfconsolidateconcreteinexperimentalreinforcedconcretebeamcolumnstructureswithalccofineandsteelfiber
AT gelangovan astudyonselfconsolidateconcreteinexperimentalreinforcedconcretebeamcolumnstructureswithalccofineandsteelfiber
AT gvimalarokiaraj studyonselfconsolidateconcreteinexperimentalreinforcedconcretebeamcolumnstructureswithalccofineandsteelfiber
AT gelangovan studyonselfconsolidateconcreteinexperimentalreinforcedconcretebeamcolumnstructureswithalccofineandsteelfiber