American Psychological Association 6th edition

Song, X., Liu, W., Jiang, F., Yu, M., & Peng, X. (2024). Effect of hydrogen embrittlement on dislocation emission from a semi-elliptical surface crack tip in nanometallic materials. Archive of Applied Mechanics, 94(11), 3377-3388. https://doi.org/10.1007/s00419-024-02674-7

ISO-690 (author-date, English)

SONG, Xiaoya, LIU, Wei, JIANG, Fujun, YU, Min und PENG, Xianghua, 2024. Effect of hydrogen embrittlement on dislocation emission from a semi-elliptical surface crack tip in nanometallic materials. Archive of Applied Mechanics. 1 November 2024. Vol. 94, no. 11, p. 3377-3388. DOI 10.1007/s00419-024-02674-7.

Modern Language Association 9th edition

Song, X., W. Liu, F. Jiang, M. Yu, und X. Peng. „Effect of Hydrogen Embrittlement on Dislocation Emission from a Semi-Elliptical Surface Crack Tip in Nanometallic Materials“. Archive of Applied Mechanics, Bd. 94, Nr. 11, November 2024, S. 3377-88, https://doi.org/10.1007/s00419-024-02674-7.

Mohr Siebeck - Recht (Deutsch - Österreich)

Song, Xiaoya/Liu, Wei/Jiang, Fujun/Yu, Min/Peng, Xianghua: Effect of hydrogen embrittlement on dislocation emission from a semi-elliptical surface crack tip in nanometallic materials, Archive of Applied Mechanics 2024, 3377-3388.

Emerald - Harvard

Song, X., Liu, W., Jiang, F., Yu, M. und Peng, X. (2024), „Effect of hydrogen embrittlement on dislocation emission from a semi-elliptical surface crack tip in nanometallic materials“, Archive of Applied Mechanics, Vol. 94 No. 11, S. 3377-3388.

Achtung: Diese Zitate sind unter Umständen nicht zu 100% korrekt.