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      [RETRACTED: Insights into Hydrogen Embrittlement of Nickel Single Crystal Superalloys]

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      1 , 1 ,
      13th Asia Pacific Microscopy Congress 2025 (APMC13)
      2-7 Febuary 2025
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            Author and article information

            Contributors
            Conference
            21 January 2025
            : e389
            Affiliations
            [1 ] Department of Materials Engineering, Indian Institute of Science, Bengaluru, Karnataka, India;
            Author notes
            Article
            10.14293/APMC13-2025-0389
            94887bd0-7c12-4800-9c2c-acda6178fccf
            2025 The Authors.

            Published under Creative Commons Attribution 4.0 International ( CC BY 4.0). Users are allowed to share (copy and redistribute the material in any medium or format) and adapt (remix, transform, and build upon the material for any purpose, even commercially), as long as the authors and the publisher are explicitly identified and properly acknowledged as the original source.

            13th Asia Pacific Microscopy Congress 2025
            APMC13
            13
            Brisbane, Australia
            2-7 Febuary 2025
            History
            Product

            ScienceOpen

            Categories
            PS02 - Atomic Resolution Microscopy & Microanalysis

            References

            1. M. Dollar and I. M. Bernstein, The effect of hydrogen on deformation substructure, flow and fracture in a nickel-base single crystal superalloy, Acta Metall., 36 (1988), pp. 2369-2376.

            2. Jun Xiong, Yaxin Zhu, Zhenhuan Li and Minsheng Huang, Hydrogen-enhanced interfacial damage in Ni-based single crystal superalloy, Scripta Materialia., 143 (2018), pp. 30-34.

            3. Suchismita Sanyal, Umesh V. Waghmare, P. R. Subramaniam and Michael. F. X. Gigliotti, First-principles understanding of the environmental embrittlement of the Ni/Ni3Al interface, Scripta Materialia., 63 (2010), pp. 391-394.

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