DocumentCode
1353123
Title
Hydrogen leakage due to stress corrosion cracking of stator conductors in 210 MW generator: a case study
Author
Jain, Pradeep ; Bhakta, Umesh C. ; Sanyal, Salil K.
Author_Institution
Res. & Dev. Centre, Nat. Thermal Power Corp. Ltd., Noida, India
Volume
15
Issue
1
fYear
2000
fDate
3/1/2000 12:00:00 AM
Firstpage
57
Lastpage
60
Abstract
This paper presents a case study conducted to find out the reasons of rupture/failure at bends of water cooled stator bar in a 210 MW generator. The bars containing hollow and solid subconductors were cleaned to remove the insulation. The failed portions were examined under a scanning electron microscope, optical microscope and the corrosion products by X-ray analysis. The investigation revealed the presence of intergranular brittle cracks, cuprous oxide tarnish film, ammonia, and moisture. All these showed the characteristic features of SCC in copper metal in ammonical solution. The ultimate rupture by SCC of solid and hollow conductors took place in three stages: (1) water leaked from inside the hollow conductor, at the lug braze; (2) the water reacted with the insulation and produced ammonia; and (3) the ammonia caused SCC and led to heavy leakage of water and hydrogen in the generator. Each stage involved in the failure process has been described
Keywords
AC generators; X-ray analysis; ammonia; brittle fracture; conductors (electric); cooling; hydrogen; leak detection; machine testing; optical microscopy; scanning electron microscopy; stators; stress corrosion cracking; 210 MW; X-ray analysis; ammonia; ammonical solution; copper metal; corrosion products; cuprous oxide tarnish film; failure; failure process; generator; hollow subconductors; hydrogen leakage; intergranular brittle cracks; lug braze; moisture; optical microscope; rupture; scanning electron microscope; solid subconductors; stator conductors; stress corrosion cracking; water cooled stator bar; water leakage; Conductors; Corrosion; Hydrogen; Insulation; Optical films; Optical microscopy; Scanning electron microscopy; Solids; Stators; Stress;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/60.849116
Filename
849116
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