Research Article

Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW

Volume: 10 Number: 3 September 30, 2023
EN

Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW

Abstract

Al6013 base metals were joined successfully with ER4047 weld metal by using the GTAW method under different welding currents. Post-weld T6 heat treatment effects on corrosion properties were investigated in terms of open circuit potential (OCP), potentiodynamic polarization (PDS), and electrochemical impedance spectroscopy (EIS) tests. It was determined that corrosion resistance of the post-weld samples increased with increasing welding current, while T6 heat-treatment only effective on 110A and 140A welding current samples (3.61 to 2.08, 2.95 to 2.40, and 1.38 to 2.15 µA·cm-2 for 110, 140, and 170A welding current before and after T6 heat-treatment). The characteristics of the oxide films on the surfaces are revealed with EIS analysis by a two-constant equivalent circuit model which observed that while the passive film originating from Al is formed on the surfaces, on the other hand, it contains a pittings on the surface. It was determined that the pitting resistance of the T6 heat-treated 110A samples increased (3075 to 4562 Ω). Post-corrosion SEM surface morphologies showed that low welding currents lead to more damage with increased exposure to corrosion.

Keywords

Thanks

The author would like to thank Professor Burak Dikici for helpful contribution on electrochemical corrosion tests.

References

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Details

Primary Language

English

Subjects

Resource Technologies, Mechanical Engineering (Other), Corrosion

Journal Section

Research Article

Publication Date

September 30, 2023

Submission Date

June 12, 2023

Acceptance Date

July 31, 2023

Published in Issue

Year 2023 Volume: 10 Number: 3

APA
Topuz, M. (2023). Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW. Hittite Journal of Science and Engineering, 10(3), 269-277. https://doi.org/10.17350/HJSE19030000316
AMA
1.Topuz M. Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW. Hittite J Sci Eng. 2023;10(3):269-277. doi:10.17350/HJSE19030000316
Chicago
Topuz, Mehmet. 2023. “Simultaneous Effect of Welding Current With PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW”. Hittite Journal of Science and Engineering 10 (3): 269-77. https://doi.org/10.17350/HJSE19030000316.
EndNote
Topuz M (September 1, 2023) Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW. Hittite Journal of Science and Engineering 10 3 269–277.
IEEE
[1]M. Topuz, “Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW”, Hittite J Sci Eng, vol. 10, no. 3, pp. 269–277, Sept. 2023, doi: 10.17350/HJSE19030000316.
ISNAD
Topuz, Mehmet. “Simultaneous Effect of Welding Current With PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW”. Hittite Journal of Science and Engineering 10/3 (September 1, 2023): 269-277. https://doi.org/10.17350/HJSE19030000316.
JAMA
1.Topuz M. Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW. Hittite J Sci Eng. 2023;10:269–277.
MLA
Topuz, Mehmet. “Simultaneous Effect of Welding Current With PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW”. Hittite Journal of Science and Engineering, vol. 10, no. 3, Sept. 2023, pp. 269-77, doi:10.17350/HJSE19030000316.
Vancouver
1.Mehmet Topuz. Simultaneous Effect of Welding Current with PostWeld T6 Heat Treatment on Corrosion Susceptibility of Al6013 Alloy Joined by GTAW. Hittite J Sci Eng. 2023 Sep. 1;10(3):269-77. doi:10.17350/HJSE19030000316

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