Atomistic investigation on initiation of stress corrosion cracking of polycrystalline Ni60Cr30Fe10 alloys under high-temperature water by reactive molecular dynamics simulation

Author:

Liu Xiaolong,Kim Sung-Yup,Lee Seung Hwan,Lee Boyoung

Funder

KIST

Publisher

Elsevier BV

Subject

Computational Mathematics,General Physics and Astronomy,Mechanics of Materials,General Materials Science,General Chemistry,General Computer Science

Reference47 articles.

1. Office of Public Affairs, U.S. Nuclear Regulatory Commission, Davis-Besse reactor pressure vessel head degradation: overview, lessons learned, and NRC actions based on lessons learned (NUREG/BR-0353, Revision 1), https://www.nrc.gov/docs/ML0824/ML082490129.pdf (2008).

2. Effect of surface preparation on intergranular stress corrosion cracking of alloy 600 in hydrogenated steam;Scenini;Corrosion,2008

3. Grain boundary structure and intergranular stress corrosion crack initiation in high temperature water of a thermally sensitised austenitic stainless steel, observed in situ;Stratulat;Corros. Sci.,2014

4. Discrete dislocation modeling of stress corrosion cracking in an iron;Adlakha;Corros. Revi.,2015

5. Dependence of stress corrosion cracking of alloy 690 on temperature, cold work, and carbide precipitation—role of diffusion of vacancies at crack tips;Arioka;Corrosion,2011

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