Random forest classifier for high entropy alloys phase diagnosis

Author:

Yousefi MasoudORCID,Rahmani Khosrow,Rajabi Masoud,Reyhani Ali,Moudi Mehdi

Publisher

Springer Science and Business Media LLC

Reference51 articles.

1. Yousefi, M., Rajabi, M., Reyhani, A., Asgari, N.: Corrosion and biocompatibility properties of TiZrNbCrV, TiZrNbFeCr, and TiZrNbFeV high entropy alloys produced through mechanical alloying. J. Mater. Eng. Perform. (2023). https://doi.org/10.1007/s11665-023-08990-3

2. Mishra, R.S., Haridas, R.S., Agrawal, P.: High entropy alloys—tunability of deformation mechanisms through the integration of compositional and microstructural domains. Mater. Sci. Eng. A 812, 141085 (2021)

3. Afolabi, A.E., Popoola, A.P.I., Popoola, O.M.: High entropy alloys: advance material for landing gear aerospace applications. In: Kharissova, O., Martínez, L., Kharisov, B. (eds.) Handbook of Nanomaterials and Nanocomposites for Energy and Environmental Applications. Springer, Cham (2020)

4. Shi, T., Lei, P.H., Yan, X., et al.: Current development of body-centered cubic high-entropy alloys for nuclear applications. Tungsten 3, 197–217 (2021)

5. Guo, Y., Li, X., Liu, Q.: A novel biomedical high-entropy alloy and its laser-clad coating designed by a cluster-plus-glue-atom model. Mater. Design 196, 109085 (2020)

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