Tailoring precipitates for enhanced hydrogen trapping in aluminum alloys
Ji, Yucheng; Fu, Xiaoqian; Safyari, Mahdieh; Yao, Chenyang; Shuang, Fei; Cheng, Xuequn; Yin, Xucheng; Li, Xiaogang; Moshtaghi, Masoud; Dong, Chaofang; Dey, Poulumi (2025-12-02)
Post-print / Final draft
Ji, Yucheng
Fu, Xiaoqian
Safyari, Mahdieh
Yao, Chenyang
Shuang, Fei
Cheng, Xuequn
Yin, Xucheng
Li, Xiaogang
Moshtaghi, Masoud
Dong, Chaofang
Dey, Poulumi
02.12.2025
Nature Communications
Springer Nature
School of Energy Systems
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe202601082187
https://urn.fi/URN:NBN:fi-fe202601082187
Tiivistelmä
Enhancing the hydrogen embrittlement (HE) resistance of alloys caters to the urgent needs of engineering safety and long-distance hydrogen transportation. Highly dense precipitates in the alloys act as H traps, however, some of them cannot strongly trap H thus failing to prevent its accumulation at the critical regions. Experimentally, it is challenging to expeditiously identify and generate phases causing strengthening and acting as strong H traps. Here, we demonstrate a computation-based design strategy to generate precipitates strongly trapping H. Based on the quantum machine learning Al-Sc-Cu potential, the optimal processing parameters of strong H trapping phases are determined, even though they are metastable in nature. Elemental mapping in electron microscope and atom probe tomography confirms the presence of Cu in Al3Sc and its strong interaction with H. Hence, we envisage the proposed strategy will accelerate the design of HE-resistant microstructures of various technologically relevant materials via identification of desirable phases.
Lähdeviite
Ji, Y., Fu, X., Safyari, M., Yao, C., Shuang, F., Cheng, X., Yin, X., Li, X., Moshtaghi, M., Dong, C., Dey, P., Tailoring precipitates for enhanced hydrogen trapping in aluminum alloys. Nat Commun (2025). https://doi.org/10.1038/s41467-025-66998-w
Alkuperäinen verkko-osoite
https://www.nature.com/articles/s41467-025-66998-wKokoelmat
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