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Author:

Polin, Nikita (Polin, Nikita.) | Skokov, Konstantin P. (Skokov, Konstantin P..) | Aubert, Alex (Aubert, Alex.) | Zhang, Hongguo (Zhang, Hongguo.) | Ekitli, Burçak (Ekitli, Burçak.) | Adabifiroozjaei, Esmaeil (Adabifiroozjaei, Esmaeil.) | Molina-Luna, Leopoldo (Molina-Luna, Leopoldo.) | Gutfleisch, Oliver (Gutfleisch, Oliver.) | Gault, Baptiste (Gault, Baptiste.)

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EI Scopus SCIE

Abstract:

2:17 SmCo magnets with a quinary composition of Sm(Co,Cu,Fe,Zr)7+δ are industrially-relevant hard magnets used in high temperature and corrosive environments. Their complex cellular/lamellar nanostructure, consisting of ordered 2:17 phase cells, 1:5 phase cell boundaries and Z-phase (Zr-rich) lamellae, is essential for their high coercivity. However, the system's complexity makes it challenging to determine the contribution of each element or microstructural feature to coercivity. To disentangle the microstructure-property relationships, we simplified the system to binary and ternary SmCo7.7-xZrx (with x=0and0.1) magnets and conducted detailed micro- to atomic-scale analyses. Only Zr-containing magnets formed a cellular/lamellar nanostructure akin to industrial magnets, in Zr-rich regions with at least 1.4 at.% Zr, but without achieving high coercivity due to low elemental gradients in absence of Cu across cell boundaries. Data from Zr-poor areas of SmCo7.6Zr0.1 suggests that 2:17 phase twin boundaries facilitate cellular nanostructure formation by providing inhomogeneities for heterogeneous nucleation. © 2024 The Author(s)

Keyword:

Zirconium alloys High resolution transmission electron microscopy Zirconium Cobalt alloys Samarium alloys Ternary systems Cell culture High temperature corrosion Copper Iron alloys Zinc alloys Copper alloys

Author Community:

  • [ 1 ] [Polin, Nikita]Max-Planck Institute for Sustainable Materials, Max-Planck-Str. 1, Düsseldorf; 40237, Germany
  • [ 2 ] [Skokov, Konstantin P.]Functional Materials, Institute of Materials Science, Technical University of Darmstadt, Peter-Grünberg-Str. 16, Darmstadt; 64287, Germany
  • [ 3 ] [Aubert, Alex]Functional Materials, Institute of Materials Science, Technical University of Darmstadt, Peter-Grünberg-Str. 16, Darmstadt; 64287, Germany
  • [ 4 ] [Zhang, Hongguo]Functional Materials, Institute of Materials Science, Technical University of Darmstadt, Peter-Grünberg-Str. 16, Darmstadt; 64287, Germany
  • [ 5 ] [Zhang, Hongguo]College of Materials Science and Engineering, Key Laboratory of Advanced Functional Materials, Ministry of Education, Beijing University of Technology, Beijing; 100124, China
  • [ 6 ] [Ekitli, Burçak]Functional Materials, Institute of Materials Science, Technical University of Darmstadt, Peter-Grünberg-Str. 16, Darmstadt; 64287, Germany
  • [ 7 ] [Adabifiroozjaei, Esmaeil]Advanced Electron Microscopy Division, Institute of Materials Science, Department of Materials and Geosciences, Technische Universität Darmstadt, Peter-Grünberg-Str. 2, Darmstadt; 64287, Germany
  • [ 8 ] [Molina-Luna, Leopoldo]Advanced Electron Microscopy Division, Institute of Materials Science, Department of Materials and Geosciences, Technische Universität Darmstadt, Peter-Grünberg-Str. 2, Darmstadt; 64287, Germany
  • [ 9 ] [Gutfleisch, Oliver]Functional Materials, Institute of Materials Science, Technical University of Darmstadt, Peter-Grünberg-Str. 16, Darmstadt; 64287, Germany
  • [ 10 ] [Gault, Baptiste]Max-Planck Institute for Sustainable Materials, Max-Planck-Str. 1, Düsseldorf; 40237, Germany
  • [ 11 ] [Gault, Baptiste]Department of Materials, Royal School of Mines, Imperial College, Prince Consort Road, London; SW7 2BP, United Kingdom

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Source :

Scripta Materialia

ISSN: 1359-6462

Year: 2025

Volume: 258

6 . 0 0 0

JCR@2022

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 9

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