在钕铁硼磁体上涂上Dy以提高永磁体的矫顽力

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Huseyin Ucar, D. Parker, I. Nlebedim, R. McCallum, S. McCall, M. Paranthaman
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引用次数: 7

摘要

本文提出了一种理论分析支持的方法,用于优化临界稀土元素镝在Nd2Fe14B (NdFeB)基永磁体中的使用。在这种方法中,我们选择性地在磁体边缘和表面等位置使用Dy,其中退磁因子最显著,而不是均匀地在整个整体样品中使用。将200 nm厚的Dy薄膜溅射到厚度为3 mm的N-38, NdFeB商用磁体上,并在600 ~ 700℃退火后,磁体的矫顽力增强。此外,我们的实验结果表明,在总Dy重量百分比为0.06%的情况下,钕铁硼磁体的能量产物增加了5%,远低于商业级钕铁硼磁体的能量产物。最后,假设所有的Dy都扩散到钕铁硼磁体中,能量乘积的改善相当于节省了超过1%的Dy(临界元素)。因此,使用这种技术制造的磁体将比目前制造的磁体性能更高,而且价格明显更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategic coating of NdFeB magnets with Dy to improve the coercivity of permanent magnets
Here, we present a method, supported by theoretical analysis, for optimizing the usage of the critical rare earth element dysprosium in Nd2Fe14B (NdFeB)-based permanent magnets. In this method, we use Dy selectively in locations such as magnet edges and faces, where demagnetization factors are most significant, rather than uniformly throughout the bulk sample. A 200 nm thick Dy film was sputtered onto commercial N-38, NdFeB magnets with a thickness of 3 mm and post-annealed at temperatures from 600 - 700 C. Magnets displayed enhanced coercivities after post-annealing. Furthermore, our experimental results indicate as large as a 5 percent increase in the energy product of NdFeB magnets, achieved for a total Dy weight percentage of 0.06 percent, much less than that used in commercial grade Dy-NdFeB magnets. Finally, by assuming all Dy diffused into NdFeB magnets, the improvement in energy product corresponds to a saving of over 1% Dy (critical element). Magnets manufactured using this technique will therefore be higher performing and significantly less expensive than those made presently.
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
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0
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