Fig. 1. Polarization curve for Tafel analysis.
Fig. 2. Potential variation of Al5083-H321 during galvanostatic experiment at various current densities in seawater.
Fig. 3. Weight loss and surface morphologies of Al5083-H321 after galvanostatic experiment at various current densities for 30 min in seawater.
Fig. 4. SEM images of surface morphologies for Al5083-H321 after galvanostatic experiment at various current densities in seawater.
Fig. 5. 3D microscopic image analysis of Al5083-H321 after galvanostatic experiment at various current densities in seawater.
Fig. 6. Surface morphologies after galvanostatic experiment at the current densities of 0.01 mA/cm2 and 10 mA/cm2 with various applied time in seawater.
Fig. 7. Weight loss after galvanostatic experiment at current density of 10 mA/cm2 with various applied time in seawater.
Fig. 8. Surface morphologies after galvanostatic experiment at the current densities of 0.01 mA/cm2 and 10 mA/cm2 with various applied time in seawater.
Fig. 9. 3D microscopic image analysis after galvanostatic experiment at the current densities of 0.01 mA/cm2 and 10 mA/cm2 with various applied time in seawater.
Table 1. Chemical compositions of Al5083-H321 (wt%)
Table 2. Chemical compositions and properties of seawater
References
- K. Y Yoon, Y. S. Kim, S. H. Lee, Developing practical recycling methods of FRP boats, J. Korean Soc. Mar. Environ. Eng. (2006) 330-334.
- C. J. Lee, H, J, Lee, B. J. Kang, D. S.Kim, J. H. Gwak, A study of fire safety evaluation of FRP boat. J. Korean Soc. Mar. Eng. (2007) 139-141.
- J. J. Lee, A Study on the impact fracture behavior of side plate for G/T 35ton class FRP vessel. J. Korea Sh. Saf. Technol. Auth. (2008) 64-76.
- S. W. Oh, T. B. Jeon, J. M. Park, Location analysis on the melting system of waste FRP ship, J. Korean Soc. Mar. Eng. 13 (2010) 75-82.
- S. J. Kim, S. K. Jang, Mechanical and electrochemical characteristics in welding with robot on 6061-T6 Al alloy for Al ship, J. Korean Soc. Mar. Eng. 33 (2009) 313-321. https://doi.org/10.5916/jkosme.2009.33.2.313
- R. L. Hecht, K. Kannan, Superplasticity and Superplastic Forming, publ., A.K. Ghosh, T.R. Bieler, The Metallurgical Society, Warrendale PA, USA, (1995) 259
- J. R. Davis, Corrosion of aluminium and aluminum alloys, ASM International (1999) 79-82.
- D. A. Jones, Principles and prevention of corrosion, second Ed, Upper Saddle River, New York (1992)
- C. Vargel, Corrosion of Aluminium, Elevier, Oxford, (2004) 113-117.
- M. Yasuda, F. Weinberg, D. Tromans, Pitting corrosion of AI and AI-Cu single crystals, J. Electrochem. Soc. 137 (1990) 3708-3715. https://doi.org/10.1149/1.2086291
- S. Ono, T. Makino, R. S. Alwitt, Crystallographic pit growth on aluminum (100), J. Electrochem. Soc. 152 (2005) B39-B44. https://doi.org/10.1149/1.1839471
- Z. Szklarska-Smialowska, Pitting corrosion of aluminum. Corros. sci. 41 (1999) 1743-1767. https://doi.org/10.1016/S0010-938X(99)00012-8
- K. A. Yasakau, M. L. Zheludkevich, S. V. Lamaka, M. G. Ferreira, Role of intermetallic phases in localized corrosion of AA5083, Electrochim. Acta 52 (2007) 7651-7659. https://doi.org/10.1016/j.electacta.2006.12.072