Effect of machining on near surface microstructure and the observation of martensite at the fatigue crack tip in PWR environment of 304L stainless steel

Author:

Que Z.,Huotilainen C.,Seppänen T.,Lydman J.,Ehrnstén U.

Funder

Horizon 2020

H2020 Euratom

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics

Reference65 articles.

1. A two-stage process of fatigue-crack growth;Forsyth,1962

2. N. Frost, K. Marsh and L. Pook, Metal Fatigue, Clarendon Press, 1974.

3. W. Karlsen, “The role of non-monotonic loading in EAC - a literature review,” VTT Report, VTT-R-00867-12, Espoo, Finland, 2012.

4. Low cycle fatigue behaviour in vacuum of a 316L type austenitic stainless steel between 20 and 600°C part I: fatigue resistance and cyclic behaviour;Alain;Mater. Sci. Eng. A,1997

5. Japan Society of Mechanical Engineers, Tokyo (Japan), “Codes for nuclear power generation facilities - environmental fatigue evaluation method for nuclear power plants (S NFI-2009),” ISBN 4-88898-144-2, 2006.

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