Behavior and Performance of Reinforced Concrete Columns Subjected to Accelerated Corrosion

Author:

Hameed Asif1,Afzal Muhammad Faheem Ud Din2ORCID,Javed Ali2ORCID,Rasool Ali Murtaza34ORCID,Qureshi Mohsin Usman5ORCID,Mehrabi Armin B.2ORCID,Ashraf Imran1

Affiliation:

1. Civil Engineering Department, University of Engineering and Technology, Lahore 54000, Pakistan

2. Department of Civil and Environmental Engineering, Florida International University, Miami, FL 33174, USA

3. Diamer Basha Dam Consultant Group (DBCG)—National Engineering Services Pakistan (NESPAK), Lahore 54000, Pakistan

4. Visiting Faculty, University of Central Punjab (UCP), Lahore 54000, Pakistan

5. Faculty of Engineering, Sohar University, P.O. Box. 44, Sohar 311, Oman

Abstract

Steel reinforcement corrosion in concrete structures such as bridges, industrial plants, marine structures, and coastal buildings is a growing concern due to its impact on cost, safety, and serviceability. Corrosion leads to spalling, cracking, and reduced reinforcement diameter, which can compromise structural integrity. This study examines the behavior of concrete columns with corroded reinforcement in two phases. In the first phase, 72 columns of 150 × 150 mm cross-sectional dimensions and 300 mm length were cast and subjected to an accelerated corrosion technique. The study examined variables such as concrete cover, concrete strength, and corrosion exposure. The second phase involved studying the axial behavior of corroded columns concerning the effect of column length. Column specimens of 150 × 150 mm cross-sectional dimensions and lengths of 500 mm, 700 mm, and 900 mm were cast, corroded, and tested under axial compressive load. The study revealed that a 30 mm concrete cover offers 10% more protection against corrosion than a 20 mm cover. Continuous exposure to a corrosive environment reduces the load-carrying capacity by 50%, while columns with 28 MPa concrete strength can carry 4% more load. Longer columns are more susceptible to corrosion, leading to a significant reduction in load-carrying capacity and concrete cover damage. Therefore, maintaining adequate concrete cover, strength, and regular inspections are essential to address steel reinforcement corrosion and preserve structural integrity.

Funder

Civil Engineering Department, University of Engineering and Technology

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

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