Goll Dagmar, Loeffler Ralf, Boettle Marius, Buschbeck Joerg, Schneider Gerhard
Materials Research Institute, Aalen University, 73430 Aalen, Germany.
Siemens AG, Vogelweiherstr. 1-15, 90441 Nuremberg, Germany.
Materials (Basel). 2024 Jun 25;17(13):3110. doi: 10.3390/ma17133110.
The more effective use of readily available Ce in FeNdB sintered magnets is an important step towards more resource-efficient, sustainable, and cost-effective permanent magnets. These magnets have the potential to bridge the gap between high-performance FeNdB and hard ferrite magnets. However, for higher degrees of cerium substitution (>25%), the magnetic properties deteriorate due to the lower intrinsic magnetic properties of FeCeB and the formation of the Laves phase FeCe in the grain boundaries. In this paper, sintered magnets with the composition Fe70.9-(CeNd)18.8-B5.8-M4.5 (M = Co, Ti, Al, Ga, and Cu; with Ti, Al, Ga, and Cu less than 2.0 at% in total and Co; = 0.5 and 0.75) were fabricated and analyzed. It was possible to obtain coercive fields for higher degrees of Ce substitution, which previous commercially available magnets have only shown for significantly lower degrees of Ce substitution. For = 0.5, coercivity, remanence, and maximum energy product of = 1.29 T ( = 1026 kA/m), = 1.02 T, and () = 176.5 kJ/m were achieved at room temperature for = 0.75 = 0.72 T ( = 573 kA/m), = 0.80 T, and () = 114.5 kJ/m, respectively.
在钕铁硼烧结磁体中更有效地利用现成的铈是迈向更具资源效率、可持续性和成本效益的永磁体的重要一步。这些磁体有潜力弥合高性能钕铁硼磁体和硬铁氧体磁体之间的差距。然而,对于更高的铈替代度(>25%),由于FeCeB的固有磁性能较低以及在晶界形成Laves相FeCe,磁性能会恶化。本文制备并分析了成分Fe70.9-(CeNd)18.8-B5.8-M4.5(M = Co、Ti、Al、Ga和Cu;Ti、Al、Ga和Cu的总量小于2.0 at%且Co; = 0.5和0.75)的烧结磁体。对于更高的铈替代度有可能获得矫顽场,而之前的市售磁体仅在显著更低的铈替代度下才表现出这样的矫顽场。对于 = 0.5,在室温下分别实现了矫顽力、剩磁和最大磁能积为 = 1.29 T( = 1026 kA/m)、 = 1.02 T和() = 176.5 kJ/m;对于 = 0.75,分别为 = 0.72 T( = 573 kA/m)、 = 0.80 T和() = 114.5 kJ/m。