An Electrochemical Evaluation of the Corrosion Property on the Welded Zone of Sea Water Pipe according to Welding Materials

용접 재료 별 해수 배관 용접부위의 부식 특성에 관한 전기화학적 평가

  • Kim, Jin-Gyeong (Education and Research Division, Korea Institute of Maritime and Fisheries Technology) ;
  • Won, Chang-Uk (Education and Research Division, Korea Institute of Maritime and Fisheries Technology) ;
  • Jo, Hwang-Rae (Dept. of Mechanical and Materials Engineering, Korea Maritime Univ.) ;
  • Lee, Myung-Hoon (Dept. of Marine System Engineering, Korea Maritime Univ.) ;
  • Kim, Yun-Hae (Dept. of Mechanical and Materials Engineering, Korea Maritime Univ.) ;
  • Moon, Kyung-Man (Dept. of Mechanical and Materials Engineering, Korea Maritime Univ.)
  • 김진경 (한국해양수산연수원 교육연구처) ;
  • 원창욱 (한국해양수산연수원 교육연구처) ;
  • 조황래 (한국해양대학교 공과대학 기계소재 공학부) ;
  • 이명훈 (한국해양대학교 해사대학 기관시스템공학부) ;
  • 김윤해 (한국해양대학교 공과대학 기계소재 공학부) ;
  • 문경만 (한국해양대학교 공과대학 기계소재 공학부)
  • Published : 2007.10.31

Abstract

The sea water pipe of a ship's engine room is a severely corrosive environment caused by fast flawing sea water containing chloride ions and high conductivity. Therefore, leaking of sea water may occur as a result of local corrosion of the welded zone. Leaking is usually controlled by various welding methods. In this study, when the sea water pipe is welded with certain welding methods and welding electrodes, the corrosion resistance of WM (Welding metal) and HAZ (Heat affected zone) was investigated using electrochemical methods. Although the corrosion potential of the HAZ is higher than that of WM, the corrosion resistance of WM is superior to HAZ. However, when WM and HAZ are both opened to the sea water, the WM part with the anode was more seriously corroded than was the HAZ of the cathode by performance of a galvanic cell due to difference of the corrosion potential between HAZ and WM. In particular TIG welding showed relatively good results in corrosion resistance of both HAZ and WM compared to other welding methods.

Keywords

References

  1. 김민남, 김복인, 한정동 (2000). '습식수중 용접봉의 기계적 성질에 관한 연구', 한국해양공학회지, 제14권, 제4호, pp 56-61
  2. 김복인, 노창석, 정교헌, 김민남 (2001). '피복성분에 의한 수중용접봉의 아크 안정성 개선에 관한 연구', 한국해양공학회지, 제15권, 제4호, pp 75-79
  3. 김진경, 강명신, 김영식 (2006). '선박용 디젤기관의 주철 부품보수 용접 특성에 관한 연구', 한국해양공학회지, 제20권, 제2호, pp 41-45
  4. 신민교 (1987). 기계공작법, 아성출판사, pp 242-245
  5. 안석환, 정정환, 남기우 (2005). '용접열사이클 재현에 의한 SS400강 및 STS304강의 특성 평가', 한국해양공학회지, 제19권, 제4호, pp64-71
  6. 오종인, 김영표, 박호경, 방한서 (2007). '선체구조용 A급 강재의 하이브리드 용접에 대한 열 및 역학적 특성에 관한 연구', 한국해양공학회지, 제21권, 제1호, pp 64-68
  7. 전대희 (1985). 부식과 방식의 관리, 일중사, pp 294-298
  8. Bilmes, P.D., Liorente, C.L., Saire Human, Gassa L.M. and Gervasi, C.A. (2006). 'Microstructure and Pitting Corrosion of 13CrNiMo Weld Metal', Corrosion Science, Vol 48, pp 3261-3270 https://doi.org/10.1016/j.corsci.2005.10.009
  9. Jang, S.K. and Jeon, J.I. (2006). 'Wedability of Al 7075 Alloy According to Different Tools and Welding Conditions by F.S.W.', Journal of the Korean Society of Marine Engineering, Vol 30, No 1, pp 30-41
  10. Jones, D.A. (1998). Principles and Prevention of Corrosion, Original Americal Edition Published by Prentice-Hall, Inc., pp 314
  11. Kim, J.D., Kil, B.L. and Lee, C.J. (2006). 'The Weldability of haminated Stator Core for Motor by Pulsed Nd:YAG Laser[I]', Journal of the Korean Society of Marine Engineering, Vol 30, No 5, pp 629-635
  12. Kim, J.D., Yoo, S.J. and Kim, J.S. (2006). 'Optimization of Pulsed Nd:YAG Laser Welding Conditions for Sealing of Lithium-ion Battery', Journal of the Korean Society of Marine Engineering, Vol 30, No 5, pp 623-628
  13. Lee, Y.H., Kim, Y.H. and Kim, H. (2003). 'Crevice Corrosion Resistance of Stainless Steel in Natural Sea Water with Different Post Welding Treatment', CORROSION SCIENCE AND TECHNOLOGY, Vol 2, No 5, pp 219-224
  14. Lo, I.H., Lee, M.C., Lim, K.Y., Ho, W., Yang, G.C.Y. and Tsai, W.T. (2002). 'Effect of Heat Treatment on the Pitting Corrosion Behavior of 347SS Weld Overlay' CORROSION SCIENCE AND TECHNOLOGY, Vol 31, No 5, pp 361-367
  15. Moon, K.M., Lee, M.H., Kim, K.J., Kim, J.G. and Kim, S.J. (2003). 'A Study on the post-weld Heat Treatment Effect to Mechanicla Properties and Hydrogen Embrittlement for Heating Affected Zone of a RE36 Steel', CORROSION SCIENCE AND TECHNOLOGY, Vol 2, No 6,pp 283-288
  16. Muylder, J.V. and Pourbaix, M. (1966). Atlas of Electrochemical Eauilbria in Aqueous Solution, Ed. By M. Pourbaix, Rergomon press and cebelcor, pp 260-509
  17. Raja, V.S., Vershney, S.K., Raman, R. and Kulkarni, S.D. (1998). 'Influence of Nitrogen on the Pitting Corrosion Behavior of 904L Weld Clad', Corrosion Science, Vol 40, No 10, pp 1609-1625 https://doi.org/10.1016/S0010-938X(97)00174-1
  18. Tsay, L.W.;Lin, W.L., Chent, S.W. and Leu G.S. (1997). 'Hydrogen Sulphide Stress Corrosion Cracking of 2.25 Cr-Mo Steel Weldments', Corrosion Science, Vol 39, No 7, pp 1165-1176 https://doi.org/10.1016/S0010-938X(97)00015-2