A Novel Strategy to Design and Fabricate Nd-Fe-B Magnets

Fugang Chen, Tieqiao Zhang, Yong Zhao, Xiaoli Wang, Caiping Jiang, Jinlu Chen, Wenqiang Zhao
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引用次数: 5

Abstract

Abstract The demagnetization field distribution of a magnetized Nd-Fe-B magnet was calculated and analyzed quantitatively. Multilayered composite Nd-Fe-B magnets with specific coercivity gradient distributions lower than the demagnetization field gradient were designed and fabricated via diffusion bonding under pressure. The magnetic property dependence on the interlayer magnet thickness was studied. The low coercivity interlayer magnet with the thickness lower than the critical value does not decrease the overall magnetic properties obviously. Effective self-bonding was observed in the interface between adjacent Nd-Fe-B magnets. The crystal orientations of matrix grains and the interface phase compositions were further studied. Multilayered composite Nd-Fe-B magnets make full use of the demagnetization field distribution to save the heavy rare earth Dy/Tb sources. This work paves a new way to design and fabricate Nd-Fe-B magnets with high magnetic properties.
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Nd-Fe-B磁体设计与制造的新策略
对磁化钕铁硼磁体的退磁场分布进行了定量计算和分析。采用加压扩散键合的方法,设计并制备了比矫顽力梯度分布小于退磁场梯度的多层复合钕铁硼磁体。研究了磁性能随层间磁体厚度的变化规律。厚度低于临界值的低矫顽力层间磁体对整体磁性能的影响不明显。在相邻Nd-Fe-B磁体之间的界面上观察到有效的自键。进一步研究了基体晶粒的取向和界面相组成。多层Nd-Fe-B复合磁体充分利用了退磁场分布,节省了重稀土Dy/Tb源。本研究为高磁性钕铁硼磁体的设计与制造开辟了一条新途径。
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