Details

Title

Metallurgical Processing of CoCrFeNi High-Entropy Alloy

Journal title

Archives of Foundry Engineering

Yearbook

2024

Volume

Accepted articles

Authors

Affiliation

Müller, P. : Brno University of Technology, Czech Republic ; Zadera, A. : Brno University of Technology, Czech Republic ; Čamek, L. : Brno University of Technology, Czech Republic ; Myška, M. : Brno University of Technology, Czech Republic ; Pernica, V. : Brno University of Technology, Czech Republic

Keywords

High-entropy alloys ; CoCrFeNi ; Decarburisation ; Deoxidation ; Desulphurisation

Divisions of PAS

Nauki Techniczne

Publisher

The Katowice Branch of the Polish Academy of Sciences

Bibliography

  • Miracle, D.B. & Senkov, O.N. (2017). A critical review of high entropy alloys and related concepts. Acta Materialia. 122, 448-511. https://doi.org/10.1016/j.actamat.2016.08.081.
  • Murty, B.S., Yeh, J.W., Ranganathan, S. & Bhattacharjee, P.P. (2019). High-entropy alloys: basic concepts. High-Entropy Alloys (Second Edition). 13-30. https://doi.org/10.1016/B978-0-12-816067-1.00002-3.
  • Alshataif, Y.A., Sivasankaran, S., Al-Mufadi, F.A., Alaboodi, A.S. & Ammar, H.R. (2020). Manufacturing methods, microstructural and mechanical properties evolutions of high-entropy alloys: a review. Metals and Materials International. 26(8), 1099-1133. https://doi.org/10.1007/s12540-019-00565-z.
  • Chao, Q., Joseph, J., Annasamy, M., Hodgson, P., Barnett, M.R. & Fabijanic, D. (2024). AlxCoCrFeNi high entropy alloys from metal scrap: Microstructure and mechanical properties. Journal of Alloys and Compounds. 976, 173002, 1-13. https://doi.org/10.1016/j.jallcom.2023.173002.
  • Hariharan, K. & Sivaprasad, K. (2022). Sustainable low-cost method for production of high-entropy alloys from alloy scraps. Journal of Sustainable Metallurgy. 8(2), 625-631. https://doi.org/10.1007/s40831-022-00523-x.
  • Baker, I. (2020). Interstitials in f.c.c. high entropy alloys. Metals. 10(5), 695, 1-20. https://doi.org/10.3390/met10050695.
  • Briant, C.L., Banerji, S.K. & Ritter, A.M. (1982). The role of nitrogen in the embrittlement of steel. Metallurgical Transactions 13(11), 1939-1950. https://doi.org/10.1007/BF02645939.
  • Zhao, D., Yang, Q., Wang, D., Yan, M., Wang, P., Jiang, M., Liu, C., Diao, D., Lao, C., Chen, Z., Liu, Z., Wu, Y. & Lu, Z. (2020). Ordered nitrogen complexes overcoming strength–ductility trade-off in an additively manufactured high-entropy alloy. Virtual and Physical Prototyping. 15(sup1), 532-542. https://doi.org/10.1080/17452759.2020.1840783.
  • Wang, R., Tang, Y., Lei, Z., Ai, Y., Tong, Z., Li, S., Ye, Y. & Bai, S. (2022). Achieving high strength and ductility in nitrogen-doped refractory high-entropy alloys. Materials & Design. 213, 110356, 1-14. https://doi.org/10.1016/j.matdes.2021.110356.
  • da Costa e Silva, A.L.V. (2019). The effects of non-metallic inclusions on properties relevant to the performance of steel in structural and mechanical applications. Journal of Materials Research and Technology. 8(2), 2408-2422. https://doi.org/10.1016/j.jmrt.2019.01.009.
  • Choi, N., Lim, K.R., Na, Y.S., Glatzel, U. & Park, J.H. (2018). Characterization of non-metallic inclusions and their influence on the mechanical properties of a FCC single-phase high-entropy alloy. Journal of Alloys and Compounds. 763, 546-557. https://doi.org/10.1016/j.jallcom.2018.05.339.
  • Laurent-Brocq, M., Akhatova, A., Perrière, L., Chebini, S., Sauvage, X., Leroy, E. & Champion, Y. (2015). Insights into the phase diagram of the CrMnFeCoNi high entropy alloy. Acta Materialia. 88, 355-365. https://doi.org/10.1016/j.actamat.2015.01.068.
  • Zhao, L., Jiang, L., Yang, L.X., Wang, H., Zhang, W.Y., Ji, G.Y., Zhou, X., Curtin, W.A., Chen, X.B., Liaw, P.K., Chen, S.Y. & Wang, H.Z. (2022). High throughput synthesis enabled exploration of CoCrFeNi-based high entropy alloys. Journal of Materials Science & Technology. 110, 269-282. https://doi.org/10.1016/j.jmst.2021.09.031.
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Date

23.12.2024

Type

Article

Identifier

DOI: 10.24425/afe.2024.151310
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