Published February 2000 | Version v1
Report Open

Development of safety evaluation technique of steam generator tubes for the next generation

  • 1. Korea Advanced Institute of Science and Technology, Taejon (Korea, Republic of)

Description

Subject 1 - a technique for predicting the SCC susceptibility of steam generator tube material based on the repassivation kinetics was developed and the effects of Pb in the repassivation rate and SCC susceptibility rate of tube material was investigated with this technique. An alloy with a higher slope value of log i(t) vs. q(t) plot based on the current transient curve obtained by scratch test and a lower slope value log i(t) vs. l/q(t) plot (cBV) is repassivated faster with a more protective passive film and it can be predicted that it will show higher resistance to SCC. With PbO addition in all solution studied (pH 4, pH 10, Cl- containing pH 4), alloy 690TT showed decreased repassivation rate. So it can be predict that PbO addition lower the resistance of SCC of steam generator tune material. Subject 2 - SG wear testing of tube and support materials has been conducted at various load and sliding amplitude in air environment. The results showed effect of normal load and sliding amplitude on SG tube wear damage. It was also shown that, for predominantly sliding motion, the SG wear coefficient of work-rate model is lower for Inconel 690TT compared with inconel 600MA. SG tube wear data show that, for work-rates ranging from 4 to 25mW, average tube wear coefficient of 43.76∼54.05 X 1015 Pa-1 for Inconel 600MA and 26.88∼33.94 X 10-15 Pa1 for Inconel 690TT against 405 and 409 stainless steels

Availability note (English)

Available from INIS in electronic form; Also available from KINS

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Additional details

Publishing Information

Imprint Pagination
146 p.
Report number
KINS/HR--297

Optional Information

Notes
74 refs, 65 figs, 5 tabs