Investigation of Corrosion Fatigue of Duplex Steel X2CrNiMoN22-5 3 Exposed to a Geothermal Environment under Different Electrochemical Conditions and Load Types

Author:

Wolf Marcus,Afanasiev Roman,Böllinghaus Thomas,Pfennig Anja

Publisher

Elsevier BV

Reference26 articles.

1. Corrosion fatigue crack growth of steels in aqueous solutions I: Experimental results and modeling the effects of frequency and temperature;Thomas;Materials Science and Engineering: A,1992

2. L.J. Mu, W.Z. Zhao: Investigation on carbon dioxide corrosion behaviour of HP13Cr110 stainless steel in simulated stratum water. Corrosion Science, Vol. 52 (2010), Nr. 1, S. 82-89.

3. Y.B. Unigovski, G. Lothongkum, E.M. Gutman, D. Alush, R. Cohen: Low-cycle fatigue behavior of 316L-type stainless steel in chloride solutions. Corrosion Science, Vol. 51 (2009), Nr. 12, S. 3014-3020.

4. C.M. Holtam, D.P. Baxter, I.A. Ashcroft, R.C. Thomson: Effect of crack depth on fatigue crack growth rates for a C–Mn pipeline steel in a sour environment. International Journal of Fatigue, Vol. 32 (2010), Nr. 2, S. 288-296.

5. I. Thorbjörnsson: Corrosion fatigue testing of eight different steels in an Icelandic geothermal environment. Materials & Design, Vol. 16 (1995), Nr. 2, S. 97-102.

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