Tests and finite element modeling of concrete beams reinforced with reused steel bars

Author:

Attia Mohammed M.1ORCID,Abdelsalam Bassam Abdelsalam1,Eita M. A.2,Ahmed Mizan3,Liang Qing Quan4ORCID,Rageh Basem O.5ORCID

Affiliation:

1. Civil and Architecture Constructions Department, Faculty of Technology and Education Suez University Suez Egypt

2. The High Technological Institute 10th of Ramadan City Egypt

3. Centre for Infrastructure Monitoing and Protection, School of Civil and Mechanical Engineering, Curtin University Bentley WA Australia

4. College of Sport, Health, and Engineering, Victoria University Melbourne Victoria Australia

5. Civil Engineering Department Delta Higher Institute for Engineering and Technology Mansoura Egypt

Abstract

AbstractThis paper presents the experimental study and finite element modeling of the flexural behavior of concrete beams reinforced with reused steel bars as longitudinal reinforcements. The experimental program and results of eight reinforced concrete (RC) beams constructed with and without reused steel bars are described in detail. The replacement percentages of brand‐new bars with reused steel bars in the tested beams were 50% and 100%. The reused steel bars were coated with and without epoxy. Steel fibers with fractions of 0.5% and 1.0% of the concrete volume were added to the concrete mixes. The load‐deflection relationship, ductility index, toughness, and failure modes of the tested beams are presented and discussed. It is shown that utilizing reused steel bars decreases the ultimate load of RC beams but increases their deflection at the ultimate load compared with the control beam. Increasing the steel fiber ratio increases the ultimate load and the deflection at the ultimate load of RC beams incorporating reused steel bars. However, the zinc‐rich epoxy used to coat the reused steel bars does not affect the behavior of the beams. Three‐dimensional nonlinear finite element (FE) models of the tested beams were developed using ABAQUS and validated against the test results. The developed FE models are capable of accurately simulating the experimentally observed behavior of RC beams with reused steel bars.

Publisher

Wiley

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference30 articles.

1. FEM evaluation of reinforced concrete beams by hybrid and banana fiber bars (BFB)

2. Nonlinear finite element analysis of steel fibers reinforced post‐tensioned lightweight concrete beams;Khalil A;N Y Sci J,2018

3. Environmental impacts and decarbonization strategies in the cement and concrete industries

4. Improving construction and demolition waste collection service in an urban area using a simheuristic approach: a case study in Sydney, Australia;Yazdani M;J Clean Prod,2021

5. Applying reused steel bars to new constructions (a case study in Gaza strip);Tayeh BA;J Eng Res Technol,2018

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