Production of anisotropic SmFe3 magnets by hot deformation
Tetsuji Saito, Yusuke Ogawa, Daisuke Nishio‐Hamane
Abstract
Tetsuji Saito, Yusuke Ogawa, Daisuke Nishio‐Hamane
Abstract
In this study, we investigated the production of anisotropic SmFe3 magnets by the hot deformation of hot-pressed SmFe3 magnets. Hot-pressed SmFe3 magnets were able to be hot-deformed at 973–1073 K into hot-deformed SmFe3 magnets. Although the hot-deformed SmFe3 magnet produced at 973 K was magnetically isotropic, the specimen produced at 1023 K was magnetically anisotropic. The specimen produced at 1073 K was also slightly anisotropic. This indicates that anisotropic SmFe3 magnets were successfully produced by the hot deformation of hot-pressed magnets, as has been reported in the case of hot-deformed Nd-Fe-B magnets. However, the highest coercivity obtained by these anisotropic SmFe3 magnets was only 1.5 kOe, which is insufficient in comparison with rare-earth permanent magnets. Further work is therefore necessary to increase the coercivity of these magnets.
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In this study, we investigated the production of anisotropic SmFe3 magnets by the hot deformation of hot-pressed SmFe3 magnets. Hot-pressed SmFe3 magnets were able to be hot-deformed at 973–1073 K into hot-deformed SmFe3 magnets. Although the hot-deformed SmFe3 magnet produced at 973 K was magnetically isotropic, the specimen produced at 1023 K was magnetically anisotropic. The specimen produced at 1073 K was also slightly anisotropic. This indicates that anisotropic SmFe3 magnets were successfully produced by the hot deformation of hot-pressed magnets, as has been reported in the case of hot-deformed Nd-Fe-B magnets. However, the highest coercivity obtained by these anisotropic SmFe3 magnets was only 1.5 kOe, which is insufficient in comparison with rare-earth permanent magnets. Further work is therefore necessary to increase the coercivity of these magnets.
Key concepts: Magnet, Coercivity, Materials science, Anisotropy, Isotropy, Deformation (meteorology), Condensed matter physics, Composite material