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Influence of Al contents on the long-term corrosion behaviors of cold-sprayed Zn-xAl coatings

Influence of Al contents on the long-term corrosion behaviors of cold-sprayed Zn-xAl coatings
Influence of Al contents on the long-term corrosion behaviors of cold-sprayed Zn-xAl coatings
Znsingle bondAl coating is considered one of the most economic candidates for marine static immersive corrosion protecting technology, in which the Al/Zn ratio is quite crucial to achieve a certain aggressive ions concentration corrosion. In this study, different Al contents Zn-xAl composite coatings were prepared using low-pressure dynamic cold spraying, potentiodynamic polarization and electrochemical impedance spectroscopy techniques were implied to reveal the long-term corrosion behaviors in 3.5 wt% NaCl solution and experimentally optimize the Al and Zn composition of the composite coating for marine static immersion corrosive resistance. The results showed that the weight loss kinetics curve of Zn-xAl composite coatings conforms well to a linear equation over time after logarithms, an increase in Al content leads to enhanced corrosion resistance of Zn-xAl composite coatings. After 1440 h immersion, the optimum Znsingle bond95Al composite coating, with high ECorr (−1.522 V) and low ICorr ((4.881 ± 0.98) × 10−5 A/cm2), presented the best corrosion resistance, due to the compact network passive film composing of Al(OH)3 and Al2(OH)5Cl
2H2O, which slowed down mass-transfer step of Zn/Al elements.
Zn--Al coating, static immersion, passive films, corrosion resistance
0257-8972
Li, Wensheng
9483fd8e-f3d4-48b8-8a75-14ff5fc5d9e5
Zhang, Jinling
57355918-b92a-48d3-b9f0-c29ef558d853
Cui, Shuai
43beeeb4-dab5-46dc-80c1-98ac12f496e4
Wang, Shuncai
8a390e2d-6552-4c7c-a88f-25bf9d6986a6
Cheng, Bo
e67584e9-a8b4-4c79-9876-03edb98915f1
Li, Wensheng
9483fd8e-f3d4-48b8-8a75-14ff5fc5d9e5
Zhang, Jinling
57355918-b92a-48d3-b9f0-c29ef558d853
Cui, Shuai
43beeeb4-dab5-46dc-80c1-98ac12f496e4
Wang, Shuncai
8a390e2d-6552-4c7c-a88f-25bf9d6986a6
Cheng, Bo
e67584e9-a8b4-4c79-9876-03edb98915f1

Li, Wensheng, Zhang, Jinling, Cui, Shuai, Wang, Shuncai and Cheng, Bo (2023) Influence of Al contents on the long-term corrosion behaviors of cold-sprayed Zn-xAl coatings. Surface and Coatings Technology, 476, [130201]. (doi:10.1016/j.surfcoat.2023.130201).

Record type: Article

Abstract

Znsingle bondAl coating is considered one of the most economic candidates for marine static immersive corrosion protecting technology, in which the Al/Zn ratio is quite crucial to achieve a certain aggressive ions concentration corrosion. In this study, different Al contents Zn-xAl composite coatings were prepared using low-pressure dynamic cold spraying, potentiodynamic polarization and electrochemical impedance spectroscopy techniques were implied to reveal the long-term corrosion behaviors in 3.5 wt% NaCl solution and experimentally optimize the Al and Zn composition of the composite coating for marine static immersion corrosive resistance. The results showed that the weight loss kinetics curve of Zn-xAl composite coatings conforms well to a linear equation over time after logarithms, an increase in Al content leads to enhanced corrosion resistance of Zn-xAl composite coatings. After 1440 h immersion, the optimum Znsingle bond95Al composite coating, with high ECorr (−1.522 V) and low ICorr ((4.881 ± 0.98) × 10−5 A/cm2), presented the best corrosion resistance, due to the compact network passive film composing of Al(OH)3 and Al2(OH)5Cl
2H2O, which slowed down mass-transfer step of Zn/Al elements.

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Accepted/In Press date: 12 November 2023
e-pub ahead of print date: 17 November 2023
Published date: 20 November 2023
Keywords: Zn--Al coating, static immersion, passive films, corrosion resistance

Identifiers

Local EPrints ID: 487438
URI: http://eprints.soton.ac.uk/id/eprint/487438
ISSN: 0257-8972
PURE UUID: 45af4a9b-95f8-481b-a470-4a919fae7c2c

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Date deposited: 20 Feb 2024 12:59
Last modified: 17 Mar 2024 07:40

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Contributors

Author: Wensheng Li
Author: Jinling Zhang
Author: Shuai Cui
Author: Shuncai Wang
Author: Bo Cheng

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