Investigating the Impact of Surface Finishing and Residual Stress on the Oxidation Behavior of Alloy 800

Author:

Abraham Geogy J.,Rana Vishav,Kain V.,Raja V. S.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference51 articles.

1. R. Killian, N. Wieling, and L. Stieding, Corrosion Resistance of SG Tubing Material lncoloy 800 mod and Inconel 690 TT, Werkst. und Korros., 1991, 42, p 490–496.

2. R., Kilian, R., Zimmer, R., Arenz, J., Beck, T., and Schönherr, M., Widera, Operating experience with Alloy 800 SG tubing in Europe. In: Proceedings of the 13th International Conference on Environmental Degradation of Materials in NuclearPower Systems-Water Reactors, August 19–23, Whistler, B.C., Canada, 2007.

3. R.W. Staehle and J.A. Gorman, Quantitative assessment of submodes of stress corrosion cracking on the secondary side of steam generator tubing in pressurized water reactors: part 1, Corrosion, 2003, 59, p 931–994.

4. R.L., Tapping, Y.C., Lu, and M., Pandey, Alloy 800 SG tubing: current status andfuture challenges. In: 13th International Conference on Environmental Degradation of Materials in Nuclear Power Systems-Water Reactors,August 19–23, 2007, Whistler, B.C., Canada 2007.

5. A. Turnbull, K. Mingard, J.D. Lord, B. Roebuck, D.R. Tice, K.J. Mottershead, N.D. Fairweather, and A.K. Bradbury, Sensitivity of Stress Corrosion Cracking of Stainless Steel to Surface Machining and Grinding Procedure, Corros. Sci., 2011, 53(10), p 3398–3415.

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