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Mechanical Properties of Sintered Ce-Fe-B Magnets |
Anhua LI1( ), Yueming ZHANG1, Haibo FENG1, Ning ZOU2, Zhongshan Lü2, Xujie ZOU2, Wei LI1 |
1 Division of Functional Material, Central Iron & Steel Research Institute, Beijing 100081, China 2 Ningbo Funeng New Material Company, Ningbo 315336, China |
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Cite this article:
Anhua LI, Yueming ZHANG, Haibo FENG, Ning ZOU, Zhongshan Lü, Xujie ZOU, Wei LI. Mechanical Properties of Sintered Ce-Fe-B Magnets. Acta Metall Sin, 2017, 53(11): 1478-1486.
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Abstract The (R, Ce)-Fe-B magnets have been successfully industrialized in recent years. The mechanical property of sintered permanent magnets is one important aspect of their comprehensive performances, which directly influences the service reliability and the production cost. In this work, the bending strength, fracture toughness, Vickers hardness and brittleness index of commercial (R1-xCex)30.5’31.5Febal.-B1M1 (mass fraction, %) magnets with different Ce contents have been investigated. The microfractures of the magnets were observed by SEM equipped with EDS. It shows that the bending strength and the fracture toughness of (R, Ce)-Fe-B magnets have a downward tendency with increasing Ce content x, while the Vickers hardness of the magnets varies irregularly with Ce content. The optimum mechanical properties have been obtained in the (R1-xCex)30.5~31.5Febal.-B1M1 magnet with x=0.15; the bending strength, fracture toughness and brittleness index of the magnet with x=0.15 are obviously superior to those of the ordinary sintered Nd-Fe-B magnets. Some flocculent oxide phases have been discovered in the (R, Ce)-Fe-B magnet with x=0.15. The flocculent phases may absorb part of energy during crack propagating, and reduce the stress concentration at a crack tip, which is beneficial to strengthening and toughening of (R, Ce)-Fe-B magnets. However, the mechanical properties are obviously worse for the magnet with x=0.45 (Ce/ΣRE=45%). That is probably because the microstructures of the magnet with x=0.45 become deteriorated, in which abnormally large grains have been observed. The results confirm that the fracture mechanism of sintered (R, Ce)-Fe-B magnets with different Ce contents mainly appears intergranular fracture.
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Received: 13 December 2016
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Fund: Supported by National Basic Research Program of China (No.2014CB643701) and National Natural Science Foundation of China (No.51331003) |
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