Browse > Article
http://dx.doi.org/10.5516/NET.2007.39.3.231

MATERIAL RELIABILITY OF Ni ALLOY ELECTRODEPOSITION FOR STEAM GENERATOR TUBE REPAIR  

Kim, Dong-Jin (Division of Nuclear Material Technology Developments, Korea Atomic Energy Research Institute)
Kim, Myong-Jin (Division of Nuclear Material Technology Developments, Korea Atomic Energy Research Institute)
Kim, Joung-Soo (Division of Nuclear Material Technology Developments, Korea Atomic Energy Research Institute)
Kim, Hong-Pyo (Division of Nuclear Material Technology Developments, Korea Atomic Energy Research Institute)
Publication Information
Nuclear Engineering and Technology / v.39, no.3, 2007 , pp. 231-236 More about this Journal
Abstract
Due to the occasional occurrences of stress corrosion cracking(SCC) in steam generator tubing(Alloy 600), degraded tubes are removed from service by plugging or are repaired for re-use. Since electrodeposition inside a tube does not entail parent tube deformation, residual stress in the tube can be minimized. In this work, tube restoration via electrodeposition inside a steam generator tubing was performed after developing the following: an anode probe to be installed inside a tube, a degreasing condition to remove dirt and grease, an activation condition for surface oxide elimination, a tightly adhered strike layer forming condition between the electro forming layer and the Alloy 600 tube, and the condition for an electroforming layer. The reliability of the electrodeposited material, with a variation of material properties, was evaluated as a function of the electrodeposit position in the vertical direction of a tube using the developed anode. It has been noted that the variation of the material properties along the electrodeposit length was acceptable in a process margin. To improve the reliability of a material property, the causes of the variation occurrence were presumed, and an attempt to minimize the variation has been made. A Ni alloy electrodeposition process is suggested as a primary water stress corrosion cracking(PWSCC) mitigation method for various components, including steam generator tubes. The Ni alloy electrodeposit formed inside a tube by using the installed assembly shows proper material properties as well as an excellent SCC resistance.
Keywords
Stress Corrosion Cracking; Steam Generator Tubing; Electrodeposition; Repair; Anode Probe; Material Reliability;
Citations & Related Records

Times Cited By Web Of Science : 0  (Related Records In Web of Science)
연도 인용수 순위
  • Reference
1 P.E. MacDonald, V.N. Shah, L.W. Ward, P.G. Ellison, NUREG /CR-6365, INEL-95/0383, (1996) 36
2 Dong-Jin Kim, Joung Soo Kim, Hong Pyo Kim, Transactions of the Korean Nuclear Society, Spring Meeting, May 25-26, 2006
3 J. E. Williams, C. Davison, J. Electrochem. Soc., 137 (1990) 3260   DOI
4 Dong-Jin Kim, Yu Mi Roh, Moo Hong Seo, Joung Soo Kim, Surface and Coatings Tech. 192 (2005) 88   DOI   ScienceOn
5 M. Schlesinger, M. Paunovic, Modern Electroplating, 4th ed., John Wiley & Sons, Inc., 2000, p. 555
6 F. Gonzalez, A. M. Brennenstuhl, G. Palumbo, U. Erb, P.C. Lichtenberger, Materials Science Forum, 225-227 (1996) 831