Research Article

Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes

Volume: 31 Number: 6 November 1, 2020
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Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes

Abstract

The present study investigated the corrosion behavior of reinforcement bars embedded in alkali-activated (ARPC) and conventional (CRPC) reactive powder concretes. Corrosion progress in 3.5% NaCl solution, water and air environments were monitored up to 365 days. The physical and mechanical characteristics, such as water absorption, rapid chloride ion permeability, compressive and flexural strength, and corrosion characteristics, such as half cell potential and corrosion current intensity results were compared for ARPC and CRPC matrices. Even for the same mechanical performance, alkali-activated mortars were found to have a high permeable structure and an early depassivation of the rebars occurred. In the propagation stage of chloride induced corrosion, almost 13 times higher corrosion current intensity values were measured as well as earlier deterioration and cracking was observed for ARPC compared to CRPC.

Keywords

References

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Details

Primary Language

English

Subjects

Civil Engineering

Journal Section

Research Article

Publication Date

November 1, 2020

Submission Date

November 2, 2018

Acceptance Date

July 17, 2019

Published in Issue

Year 2020 Volume: 31 Number: 6

APA
Yiğiter, H., Beglarıgale, A., Aydın, S., & Baradan, B. (2020). Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes. Teknik Dergi, 31(6), 10359-10378. https://doi.org/10.18400/tekderg.478154
AMA
1.Yiğiter H, Beglarıgale A, Aydın S, Baradan B. Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes. Teknik Dergi. 2020;31(6):10359-10378. doi:10.18400/tekderg.478154
Chicago
Yiğiter, Hüseyin, Ahsanollah Beglarıgale, Serdar Aydın, and Bülent Baradan. 2020. “Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes”. Teknik Dergi 31 (6): 10359-78. https://doi.org/10.18400/tekderg.478154.
EndNote
Yiğiter H, Beglarıgale A, Aydın S, Baradan B (November 1, 2020) Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes. Teknik Dergi 31 6 10359–10378.
IEEE
[1]H. Yiğiter, A. Beglarıgale, S. Aydın, and B. Baradan, “Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes”, Teknik Dergi, vol. 31, no. 6, pp. 10359–10378, Nov. 2020, doi: 10.18400/tekderg.478154.
ISNAD
Yiğiter, Hüseyin - Beglarıgale, Ahsanollah - Aydın, Serdar - Baradan, Bülent. “Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes”. Teknik Dergi 31/6 (November 1, 2020): 10359-10378. https://doi.org/10.18400/tekderg.478154.
JAMA
1.Yiğiter H, Beglarıgale A, Aydın S, Baradan B. Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes. Teknik Dergi. 2020;31:10359–10378.
MLA
Yiğiter, Hüseyin, et al. “Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes”. Teknik Dergi, vol. 31, no. 6, Nov. 2020, pp. 10359-78, doi:10.18400/tekderg.478154.
Vancouver
1.Hüseyin Yiğiter, Ahsanollah Beglarıgale, Serdar Aydın, Bülent Baradan. Corrosion Behavior of Rebars Embedded in Alkali-Activated and Conventional Reactive Powder Concretes. Teknik Dergi. 2020 Nov. 1;31(6):10359-78. doi:10.18400/tekderg.478154

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