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Production of Anisotropic NdFeB Permanent Magnets with In Situ Magnetic Particle Alignment Using Powder Extrusion

  • Stefan Rathfelder
  • , Stephan Schuschnigg
  • , Christian Kukla (Corresponding author)
  • , Clemens Holzer
  • , Dieter Suess
  • , Carlo Burkhardt (Corresponding author)

Publications: Contribution to journalArticlePeer Reviewed

Abstract

This study investigates the sustainable production of NdFeB permanent magnets using powder extrusion molding (PEM) with in situ magnetic alignment, utilizing recycled powder from an end-of-life (Eol) wind turbine magnet obtained via hydrogen processing of magnetic scrap (HPMS). Finite Element Method (FEM) simulations were conducted to design and optimize alignment tool geometries and magnetic field parameters. A key challenge in the PEM process is achieving effective particle alignment while the continuous strand moves through the magnetic field during extrusion. To address this, extrusion experiments were performed using three different alignment tool geometries and varying magnetic field strengths to determine the optimal configuration for particle alignment. The experimental results demonstrate a high degree of alignment (Br/Js = 0.95), exceeding the values obtained with PEM without an external magnetic field (0.78). The study confirms that optimizing the alignment tool geometry and applying sufficiently strong magnetic fields during extrusion enable the production of anisotropic NdFeB permanent magnets without post-machining, providing a scalable route for permanent magnet recycling and manufacturing. Moreover, PEM with in situ magnetic particle alignment allows for the continuous fabrication of near-net-shape strands with customizable cross-sections, making it a scalable approach for permanent magnet recycling and industrial manufacturing.
Original languageEnglish
Article number3668
Number of pages23
JournalMaterials
Volume18
Issue number15
DOIs
Publication statusPublished - 1 Aug 2025

Funding

This research was carried out as part of the SUSMAGPRO project, funded by the European Union’s Horizon 2020 Research and Innovation Programme under Grant Agreement No. 821114, and the REEsilience project, funded by the European Union’s Horizon Europe Research and Innovation Programme under Grant Agreement No. 101058598.

FundersFunder number
European Union821114, 101058598

    Austrian Fields of Science 2012

    • 103018 Materials physics
    • 103015 Condensed matter

    Keywords

    • anisotropic NdFeB permanent magnets
    • metal injection molding (MIM)
    • powder extrusion molding (PEM)
    • recycling of end-of-life (Eol)-magnets

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