Corrosion Behavior of Al6061-T6 by GTAW with Different Filler Metals
DOI:
https://doi.org/10.32497/jrm.v20i3.6496Keywords:
Al6061, corrosion, ER4043, ER4047, ER5356Abstract
This study aims to compare the effect of filler metal of gas tungsten arc welding (GTAW) on the corrosion rate of Al6061 alloy weld metals. Three different filler metals, ER4043, ER4047, and ER5356, were used in the GTAW welding process. The corrosion rate characteristics of butt weld joints were studied using potentiodynamic testing in a 3.5% NaCl solution. The microstructure of the corroded weld metal was analyzed using Scanning Electron Microscopy (SEM). Results showed that filler metals affect the corrosion resistance of weld metal. It was found that ER4043 and ER4047 are more susceptible to corrosion, while ER5356 shows good corrosion resistance compared to the other filler metals. SEM observations revealed that dominant pitting corrosion was found in all welded joints and the base metal, with pit diameters ranging from 10 to 60 μm. Moreover, it was found that the Heat-Affected Zone was more susceptible to corrosion compared to the weld metal zone. Finally, welding of Al6061 using ER5356 filler metal is more recommended due to its superior resistance to pitting corrosion compared to the other types of joints.
References
[1] K. Uday and G. Rajamurugan, "Influence of tool rotational and transverse speed on friction stir welding of dissimilar aluminum 6061 composites," Materials Letters, vol. 329, p. 133182, 2022.
[2] B. Yelamasetti et al., "Synergistic Effects of Optimizing Stir Casting and Friction Stir Welding for WC and Al2O3 based Nano-Particulates Reinforced AA2014 and AA6061 Alloys: Mechanical, Weldability, Corrosion, and Microstructural Morphological Insights," Journal of Materials Research and Technology, 2025.
[3] S. Aravind and A. D. Das, "An examination on GTAW samples of 7-series aluminium alloy using response surface methodology," Materials Today: Proceedings, vol. 37, pp. 614-620, 2021.
[4] D. Varshney and K. Kumar, "Application and use of different aluminium alloys with respect to workability, strength and welding parameter optimization," Ain Shams Engineering Journal, vol. 12, no. 1, pp. 1143-1152, 2021.
[5] H. Mehdi and R. Mishra, "Investigation of mechanical properties and heat transfer of welded joint of AA6061 and AA7075 using TIG+ FSP welding approach," Journal of Advanced Joining Processes, vol. 1, p. 100003, 2020.
[6] H. Mehdi and R. Mishra, "Effect of friction stir processing on mechanical properties and heat transfer of TIG welded joint of AA6061 and AA7075," Defence Technology, vol. 17, no. 3, pp. 715-727, 2021.
[7] U. Dwivedi, S. Tiwari, A. Mishra, and S. Das, "Comparative study of weld characteristics of Friction stir welded joints on aluminium 7075 with autogenous TIG," Materials Today: Proceedings, vol. 22, pp. 2532-2538, 2020.
[8] S. Yan, B. Xing, H. Zhou, Y. Xiao, Q.-H. Qin, and H. Chen, "Effect of filling materials on the microstructure and properties of hybrid laser welded Al-Mg-Si alloys joints," Materials Characterization, vol. 144, pp. 205-218, 2018.
[9] M. Ahmed, M. Javidani, A. Maltais, and X.-G. Chen, "Comparison of Mechanical, Fatigue, and Corrosion Properties of Fusion-Welded High-Strength AA6011 Alloy Using Three Filler Wires," Processes, vol. 12, no. 6, p. 1172, 2024.
[10] V. Fahimpour, S. Sadrnezhaad, and F. Karimzadeh, "Corrosion behavior of aluminum 6061 alloy joined by friction stir welding and gas tungsten arc welding methods," Materials & Design, vol. 39, pp. 329-333, 2012.
[11] D. Priyasudana, S. A. Crisdion, P. Puspitasari, and D. D. Pramono, "Double side friction stir welding effect on mechanical properties and corrosion rate of aluminum alloy AA6061," Heliyon, vol. 9, no. 2, 2023.
[12] S. Sinhmar and D. K. Dwivedi, "A study on corrosion behavior of friction stir welded and tungsten inert gas welded AA2014 aluminium alloy," Corrosion Science, vol. 133, pp. 25-35, 2018.
[13] Z. Yang and H. Huang, "Corrosion behavior of ADC12 aluminum alloy welded joint using tungsten inert gas welding in 3.5 wt.% NaCl solution," Materials Chemistry and Physics, vol. 295, p. 127217, 2023.
[14] P. Li et al., "Effect of post-weld heat treatment on inhomogeneity of mechanical properties and corrosion behavior of rotary friction welded 2024 aluminum alloy joint," Journal of Manufacturing Processes, vol. 75, pp. 1012-1022, 2022.
[15] F. Gharavi, K. A. Matori, R. Yunus, N. K. Othman, and F. Fadaeifard, "Corrosion behavior of Al6061 alloy weldment produced by friction stir welding process," Journal of Materials Research and Technology, vol. 4, no. 3, pp. 314-322, 2015.
[16] I. A. Soomro, A. Hassan, U. Aftab, L. Zhao, A. Arshad, and B. Shahid, "Investigation of stress corrosion cracking behavior of friction stir welded thick al 6061-t6 alloy plate," Welding in the World, pp. 1-11, 2024.
[17] S. Suherman et al., "Analysis of mechanical properties, microstructure, and distortion of Al6061-T6 alloys plate using GTA and GMA welding process," Jurnal Polimesin, vol. 23, no. 2, 2025.
[18] I. H. Zainelabdeen, F. A. Al-Badour, A. Y. Adesina, R. Suleiman, and F. A. Ghaith, "Friction stir surface processing of 6061 aluminum alloy for superior corrosion resistance and enhanced microhardness," International Journal of Lightweight Materials and Manufacture, vol. 6, no. 1, pp. 129-139, 2023.
[19] Z. Szklarska-Smialowska, "Pitting corrosion of aluminum," Corrosion science, vol. 41, no. 9, pp. 1743-1767, 1999.
[20] I. Guzmán et al., "Corrosion Performance and Mechanical Strength in Aluminum 6061 Joints by Pulsed Gas Metal Arc Welding," Materials, vol. 15, no. 18, p. 6226, 2022.
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