2010
DOI: 10.1007/s10800-010-0215-6
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Characterization of passivity and pitting corrosion of 3003 aluminum alloy in ethylene glycol–water solutions

Abstract: In this work, the passivity and pitting corrosion behavior of 3003 aluminum (Al) alloy in ethylene glycol-water solutions was investigated using various electrochemical measurements, Mott-Schottky analysis and surface analysis techniques. Results demonstrate that the passive film formed on Al alloy contains both Al oxide and Al alcohol, showing an n-type semiconductor in nature. There is an enhanced corrosion resistance of the Al-alcohol film, which is resistant to adsorption of chloride ions. The pitting corr… Show more

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Cited by 20 publications
(10 citation statements)
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References 30 publications
(33 reference statements)
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“…Semiconductor properties of the passive film of aluminum or aluminum alloys have been widely reported [32][33][34][35][36][37], and the relevant results indicate that the passive film of aluminum or aluminum alloys presents either n-type [32,[34][35][36] or p-type property [33] depending on the environmental conditions. In order to reveal the effect of Ce content on the semiconductor properties of passive film, the Mott-Schottky curves are measured.…”
Section: Semiconductor Properties Of Passive Filmsmentioning
confidence: 99%
“…Semiconductor properties of the passive film of aluminum or aluminum alloys have been widely reported [32][33][34][35][36][37], and the relevant results indicate that the passive film of aluminum or aluminum alloys presents either n-type [32,[34][35][36] or p-type property [33] depending on the environmental conditions. In order to reveal the effect of Ce content on the semiconductor properties of passive film, the Mott-Schottky curves are measured.…”
Section: Semiconductor Properties Of Passive Filmsmentioning
confidence: 99%
“…Due to its adsorption, the existence of ethylene glycol had a certain protective effect on the corrosion of aluminum. [ 24 ] With an increase in the EGAS concentration, the solution resistance increased continuously, the ionic conductivity of the solution decreased, and the coverage of ethylene glycol on the aluminum surface increased. This increased coverage resulted in a decrease in the double‐layer capacitance and an increase in the surface charge transfer resistance, finally leading to gradually increasing corrosion resistance on the aluminum surface.…”
Section: Resultsmentioning
confidence: 99%
“…In neutral media, the corrosion of aluminum is mainly pitting corrosion. [ 24 ] In general, the electrochemical reactions of aluminum in an EGAS are as follows [ 26,27 ] :…”
Section: Resultsmentioning
confidence: 99%
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“…The electrochemical reactions of aluminum alloy in corrosive water solution were as follows [24,25] : Anodic reaction:…”
Section: Corrosion Mechanism Of 3a21 Aluminium Alloy In Ethylene Glycmentioning
confidence: 99%