Browse > Article
http://dx.doi.org/10.14773/cst.2010.9.6.331

Macro and Micro-electrochemical Characteristics on Dissimilar Welding Metal of Double Wall Gas Pipe for Duel Fuel Engine  

Kim, Seong-Jong (Division of Marine system Engineering, Mokpo Maritime University)
Park, Jae-Cheul (Division of Marine system Engineering, Mokpo Maritime University)
Han, Min-Su (Division of Marine system Engineering, Mokpo Maritime University)
Jang, Seok-Ki (Division of Marine system Engineering, Mokpo Maritime University)
Publication Information
Corrosion Science and Technology / v.9, no.6, 2010 , pp. 331-337 More about this Journal
Abstract
This study compared the macro and micro electrochemical characteristics at the local area of welding metal on dissimilar welding parts for type 304 stainless steel (SS) and type 316L SS. The materials are used for double wall gas pipe of duel fuel engine for a ship. The various potentiodynamic experiments were performed several times in 10% ${H_2C_2O_2}{\cdot}{H_2O}$ solution using macro and micro methods, respectively. The micro electrochemical experiments conducted to resolve at local area on cross-section of dissimilar welding materials by micro-droplet cell device. The micro-droplet cell techniques can be used almost electrochemical experiments to resolve corrosion characteristics of the limited electrode area of the metallic surface between wetted spot of working electrode and tip of sharpened capillary tube. The results of macro electrochemical experiments show that resistance of active dissolution reaction at welding zone was high due to low current density by formation of passivation protection film at passive region. According to the micro electrochemical experiment, the corrosion current density of welding zone and bond zone were relatively high.
Keywords
double wall gas pipe; macro and micro electrochemical experiment; micro droplet cell; welding;
Citations & Related Records
Times Cited By KSCI : 5  (Citation Analysis)
연도 인용수 순위
1 H. Y. Ha, C. J. Park, and H. S. Kwon, Corros. Sci., 49, 1266 (2007).   DOI   ScienceOn
2 S. J. Kim, K. J. Il, and J. S. Kim, J. Kor. Inst. Surf. Eng., 40, 262 (2007).   과학기술학회마을   DOI   ScienceOn
3 S. J. Kim and J. Y. Ko, J. of the Korean society of marine engineering, 30, 157 (2006).   과학기술학회마을
4 Y. S. Lim, Corros. Sci. Tech., 29, 1 (2000).
5 Erwan Le Roy, E. A. Cho, H. S. Kim, and H. S. Kwon, Corros. Sci. Tech., 31, 432 (2002).
6 J. T. Yun, S. W. Kim, H. G. Hwang, Ihsan-ul-haq Toor, and M. Y. Shon, Corros. Sci. Tech., 8, 209 (2009).
7 J. J. Kim and J. B. Lee, Kor. J. Met. Mater., 46, 809 (2008).
8 J. G. Nam and J. W. Kim, J. Korean Soc. Mar. Eng., 29, 612 (2005).
9 J. B. Ju, J. Korean Inst. gas, 5, 15 (2001).
10 D. S. Lee, J. Korean Soc. Mar. Env. Safety, 15, 269 (2009).   과학기술학회마을
11 M. M. Lohrengel, A. Moehring, and M. Pilaski, Electrochim. Acta, 47, 137 (2001).   DOI   ScienceOn