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A Promising MM-Fe-Al-Ga-B Permanent Material with Substantially Boosted Magnetic Performance
Wang Chen1,2, Shaoqing Ren1,2, Jiaying Jin1,2
1State Key Laboratory of Baiyunobo Rare Earth Resource Researches and Comprehensive Utilization, Baotou Research Institution of Rare Earths, Baotou, 014030, China.
None:
Exploiting the potential of mischmetal (MM, La-Ce-Pr-Nd mixture containing ≈80 wt% La-Ce) based MM-Fe-B permanent material as an advantageous alternative for the current Nd-Fe-B is intriguing, whereas remains an arduous quest due to the drastically deteriorated magnetic performance. Herein, a facile two-step strategy is proposed that Al-doping towards high maximum energy product (BH)max with the subsequential grain boundary diffusion processing (GBDP) toward high coercivity Hcj, i.e., a representative 0.7 wt% Al doping and Nd/Pr-based GBDP yields the record-high Hcj = 10.14 kOe and (BH)max = 28.02 MGOe for the MM-Fe-Al-Ga-B sintered magnets. Appropriate Al-doping plays a pivotal role in accelerating the La/Ce segregation in the LaCe-rich RE-(Al, Ga), La-rich RE6(Fe, Al, Ga)14, and Ce-rich REFe2 intergranular phases, resulting in enhanced intrinsic and extrinsic magnetism. The following Nd/Pr-based GBDP generates large quantities of RE6(Fe, Al, Ga)14 phase in triple junctions and grain boundaries, together with continuous Nd/Pr-rich magnetically hardening shell, finally harvesting the substantially boosted magnetic performance. This demonstration marks a clear picture of the two-step strategy towards fully utilizing the abundant MM resources, and overcoming the long-standing difficulty of applicable MM-Fe-B permanent material for industrialization.
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