Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure

The durability of concrete structures is often reduced owing to the corrosion of reinforcement in an aggressive environment. Ordinary reinforcement methods, such as wrapping section steel or steel plate, are also vulnerable to corrosion. Using 6061-T6 aluminium alloy as near-surface reinforcement of...

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Main Authors: Luo Daming, Li Fan, Xing Guohua
Format: Article
Language:English
Published: De Gruyter 2022-10-01
Series:Reviews on Advanced Materials Science
Subjects:
Online Access:https://doi.org/10.1515/rams-2022-0048
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author Luo Daming
Li Fan
Xing Guohua
author_facet Luo Daming
Li Fan
Xing Guohua
author_sort Luo Daming
collection DOAJ
description The durability of concrete structures is often reduced owing to the corrosion of reinforcement in an aggressive environment. Ordinary reinforcement methods, such as wrapping section steel or steel plate, are also vulnerable to corrosion. Using 6061-T6 aluminium alloy as near-surface reinforcement of the concrete structure is a feasible method. In this study, the corrosion resistance of 6061-T6 aluminium alloy bars was studied by simulating the coastal environment, atmospheric environment, and concrete internal environment with chloride solution, simulated acid rain solution, and saturated Ca(OH)2 solution. The corrosion rate of the 6061-T6 aluminium alloy in the above environments was tested using a weight loss method, and its corrosion resistance was evaluated using the metal corrosion resistance classification standard. Based on the electrochemical reaction mechanism, the polarisation properties and AC impedance spectra of steel and 6061-T6 aluminium alloy were compared, and the corrosion resistance mechanisms of steel and the 6061-T6 aluminium alloy in the above corrosive environments were obtained. The results show that the 6061-T6 aluminium alloy has better corrosion resistance than steel bars in chloride and atmospheric environments, with corrosion currents of 0.012 and 0.037 µA·cm−2, and 8-day corrosion rates of 0.051 and 0.031 mm·a−1, respectively. However, owing to the activity of the aluminium alloy, its corrosion resistance in an alkaline environment inside concrete is poor; the corrosion current is 0.22 µA·cm−2 and the 8-day corrosion rate is 16.166 mm·a−1. The research results can provide a reference for applying aluminium alloy bars as external prestressed concrete bars and near-surface steel bars.
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spelling doaj.art-1f269c0cfd934625a684875b922522162022-12-22T03:55:35ZengDe GruyterReviews on Advanced Materials Science1605-81272022-10-0161163865310.1515/rams-2022-0048Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structureLuo Daming0Li Fan1Xing Guohua2State Key Laboratory of Green Building in Western China, Xi’an University of Architecture and Technology, Xi’an 710055, ChinaState Key Laboratory of Green Building in Western China, Xi’an University of Architecture and Technology, Xi’an 710055, ChinaSchool of Civil Engineering, Chang’an University, Xi’an 710061, ChinaThe durability of concrete structures is often reduced owing to the corrosion of reinforcement in an aggressive environment. Ordinary reinforcement methods, such as wrapping section steel or steel plate, are also vulnerable to corrosion. Using 6061-T6 aluminium alloy as near-surface reinforcement of the concrete structure is a feasible method. In this study, the corrosion resistance of 6061-T6 aluminium alloy bars was studied by simulating the coastal environment, atmospheric environment, and concrete internal environment with chloride solution, simulated acid rain solution, and saturated Ca(OH)2 solution. The corrosion rate of the 6061-T6 aluminium alloy in the above environments was tested using a weight loss method, and its corrosion resistance was evaluated using the metal corrosion resistance classification standard. Based on the electrochemical reaction mechanism, the polarisation properties and AC impedance spectra of steel and 6061-T6 aluminium alloy were compared, and the corrosion resistance mechanisms of steel and the 6061-T6 aluminium alloy in the above corrosive environments were obtained. The results show that the 6061-T6 aluminium alloy has better corrosion resistance than steel bars in chloride and atmospheric environments, with corrosion currents of 0.012 and 0.037 µA·cm−2, and 8-day corrosion rates of 0.051 and 0.031 mm·a−1, respectively. However, owing to the activity of the aluminium alloy, its corrosion resistance in an alkaline environment inside concrete is poor; the corrosion current is 0.22 µA·cm−2 and the 8-day corrosion rate is 16.166 mm·a−1. The research results can provide a reference for applying aluminium alloy bars as external prestressed concrete bars and near-surface steel bars.https://doi.org/10.1515/rams-2022-00486061-t6 aluminium alloychlorideacid rainalkaliconcrete structure
spellingShingle Luo Daming
Li Fan
Xing Guohua
Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
Reviews on Advanced Materials Science
6061-t6 aluminium alloy
chloride
acid rain
alkali
concrete structure
title Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
title_full Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
title_fullStr Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
title_full_unstemmed Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
title_short Corrosion resistance of 6061-T6 aluminium alloy and its feasibility of near-surface reinforcements in concrete structure
title_sort corrosion resistance of 6061 t6 aluminium alloy and its feasibility of near surface reinforcements in concrete structure
topic 6061-t6 aluminium alloy
chloride
acid rain
alkali
concrete structure
url https://doi.org/10.1515/rams-2022-0048
work_keys_str_mv AT luodaming corrosionresistanceof6061t6aluminiumalloyanditsfeasibilityofnearsurfacereinforcementsinconcretestructure
AT lifan corrosionresistanceof6061t6aluminiumalloyanditsfeasibilityofnearsurfacereinforcementsinconcretestructure
AT xingguohua corrosionresistanceof6061t6aluminiumalloyanditsfeasibilityofnearsurfacereinforcementsinconcretestructure