Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer

In reinforced concrete structures, the beam-column connection area has a considerable influence on the behavior of the structure. The use of fiber-reinforced polymer FRP to strengthen the connections in the Reinforced structure can be one of the solutions to transform this area, thus improving the b...

Full description

Bibliographic Details
Main Authors: Rzgar A. Mohammed, Hersh F. Mahmood
Format: Article
Language:English
Published: Engiscience Publisher 2022-03-01
Series:Journal of Studies in Science and Engineering
Subjects:
Online Access:https://engiscience.com/index.php/josse/article/view/23
_version_ 1827956402469994496
author Rzgar A. Mohammed
Hersh F. Mahmood
author_facet Rzgar A. Mohammed
Hersh F. Mahmood
author_sort Rzgar A. Mohammed
collection DOAJ
description In reinforced concrete structures, the beam-column connection area has a considerable influence on the behavior of the structure. The use of fiber-reinforced polymer FRP to strengthen the connections in the Reinforced structure can be one of the solutions to transform this area, thus improving the behavior of the structure, which is achieved through the use of fiber-reinforced polymer of carbon to achieve high-strength concrete beam-column connections Investigations have been conducted using finite element modeling. The concrete damage plasticity model has been used to analyze the model. The results show that the bearing capacity has developed considerably, but the ductility is also significantly reduced. The study also evaluated the qualities of various reinforcement models and proposed the most effective reinforcement model. The use of fiber-reinforced polymer in the flex zone with fibers oriented at forty-five degrees in the shear zone of the joint showed the most significant changes in behavior. The demolition of reinforced concrete beam-column joints is a sudden failure without prior notice, since the collapse of the column and the connection before the break of the beam are undesirable, their occurrence can cause irreparable damage.
first_indexed 2024-04-09T15:03:49Z
format Article
id doaj.art-336b4d6bd6f94398b5ad0bfce48f0563
institution Directory Open Access Journal
issn 2789-634X
language English
last_indexed 2024-04-09T15:03:49Z
publishDate 2022-03-01
publisher Engiscience Publisher
record_format Article
series Journal of Studies in Science and Engineering
spelling doaj.art-336b4d6bd6f94398b5ad0bfce48f05632023-04-30T22:09:46ZengEngiscience PublisherJournal of Studies in Science and Engineering2789-634X2022-03-0121415910.53898/josse202221423Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced PolymerRzgar A. Mohammed0https://orcid.org/0000-0003-1120-2057Hersh F. Mahmood1https://orcid.org/0000-0002-8951-5822Civil Engineering Department, University of Raparin, Sulaimani, 46012, IraqCivil Engineering Department, University of Halabja, Halabja, 46018, IraqIn reinforced concrete structures, the beam-column connection area has a considerable influence on the behavior of the structure. The use of fiber-reinforced polymer FRP to strengthen the connections in the Reinforced structure can be one of the solutions to transform this area, thus improving the behavior of the structure, which is achieved through the use of fiber-reinforced polymer of carbon to achieve high-strength concrete beam-column connections Investigations have been conducted using finite element modeling. The concrete damage plasticity model has been used to analyze the model. The results show that the bearing capacity has developed considerably, but the ductility is also significantly reduced. The study also evaluated the qualities of various reinforcement models and proposed the most effective reinforcement model. The use of fiber-reinforced polymer in the flex zone with fibers oriented at forty-five degrees in the shear zone of the joint showed the most significant changes in behavior. The demolition of reinforced concrete beam-column joints is a sudden failure without prior notice, since the collapse of the column and the connection before the break of the beam are undesirable, their occurrence can cause irreparable damage.https://engiscience.com/index.php/josse/article/view/23beam-column joints finite element softwarecfrp sheet
spellingShingle Rzgar A. Mohammed
Hersh F. Mahmood
Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
Journal of Studies in Science and Engineering
beam-column joints
finite element software
cfrp sheet
title Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
title_full Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
title_fullStr Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
title_full_unstemmed Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
title_short Investigation of Strengthening Reinforced Concrete Beam-Column Connection Wrapped with Fiber-reinforced Polymer
title_sort investigation of strengthening reinforced concrete beam column connection wrapped with fiber reinforced polymer
topic beam-column joints
finite element software
cfrp sheet
url https://engiscience.com/index.php/josse/article/view/23
work_keys_str_mv AT rzgaramohammed investigationofstrengtheningreinforcedconcretebeamcolumnconnectionwrappedwithfiberreinforcedpolymer
AT hershfmahmood investigationofstrengtheningreinforcedconcretebeamcolumnconnectionwrappedwithfiberreinforcedpolymer