Simulation of corrosion field measurement on reinforced concrete using BEM

Reinforced concrete (RC) corrosion is a leading of structural deterioration and premature degradation for the infrasturctures, with significant affected for safety, durability and reability. Therefore, early assessment of RC corrosion is important to prevent deterioration of the structure. The objec...

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Bibliographic Details
Published in:Journal of Mechanical Engineering and Sciences Vol. 15; no. 2; pp. 8072 - 8081
Main Authors: Ihsan, Muhammad, Fonna, Syarizal, Islami, N., ., Faizar, Ariffin, A. K.
Format: Journal Article
Language:English
Published: Pekan Universiti Malaysia Pahang 01-06-2021
Universiti Malaysia Pahang Publishing
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Summary:Reinforced concrete (RC) corrosion is a leading of structural deterioration and premature degradation for the infrasturctures, with significant affected for safety, durability and reability. Therefore, early assessment of RC corrosion is important to prevent deterioration of the structure. The objective of this paper is to apply Boundary Element Method (BEM) for improving reinforced concrete (RC) corrosion assessment using field measurement data. In this study, the potential on whole domain of concrete structures was modeled by Laplace equation. The Laplace equation was solved by BEM, hence the potential on the concrete structure can be determined. The field data were measured by using half-cell potential technique and collected from an existing house in Aceh region that struck by the 2004 Sumatra tsunami. The simulation results show the use of BEM can improve the RC corrosion assessment. According to ASTM C876, the distribution of potential values on the concrete surface above the corroded area were in range -200 mV to -350 mV that indicated active corrosion was occurred. It can be inferred, the method can improve the field measurement data since it has capability to predict the corrosion profiles of reinforcing steel in more precise.
ISSN:2289-4659
2231-8380
DOI:10.15282/jmes.15.2.2021.11.0636