Crystallographic character of grain boundaries resistant to hydrogen-assisted fracture in Ni-base alloy 725

Author:

Hanson John P.ORCID,Bagri Akbar,Lind Jonathan,Kenesei Peter,Suter Robert M.ORCID,Gradečak Silvija,Demkowicz Michael J.ORCID

Funder

DOE | Office of Science

NSF | Directorate for Mathematical & Physical Sciences | Division of Materials Research

DOE | SC | Basic Energy Sciences

National Science Foundation

BP-MIT Materials and Corrosion Center

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

Reference87 articles.

1. Johnson, W. H. On some remarkable changes produced in iron and steel by the action of hydrogen and acids. Proc. R. Soc. Lond. 23, 168–179 (1874).

2. Shipilov, S. A. Catastrophic failures due to environmental-assisted cracking of metals: Case histories. in Proc. International Symposium on Environmental Degradation of Materials and Corrosion Control in Metals (eds. Elboujdaini, M. & Ghali, E.) 225–241 (Canadian Institute of Mining, Metallurgy and Petroleum, 1999). https://doi.org/10.1080/10643389.2012.728825

3. Shademan, S. S., Martin, J. W. & Davis, A. P. UNS N07725 nickel alloy connection failure. Corrosion 2012 1–23 (NACE International, 2012).

4. Morana, R., Smith, V. C. & Smith, A. Evaluation of precipitation hardening nickel alloys for use in hydrogen sulphide containing environments. Corrosion 2015 1–13 (NACE International, 2015).

5. Dutta, R. S. Corrosion aspects of Ni-Cr-Fe based and Ni-Cu based steam generator tube materials. J. Nucl. Mater. 393, 343–349 (2009).

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