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Grain boundary diffusion treatment of sintered NdFeB magnets by low cost La-Al-Cu alloys with various Al/Cu ratios

机译:各种Al / Cu比的低成本La-Al-Cu合金对NdFeB烧结磁体的晶界扩散处理

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摘要

Different from many previous reports, La-Al-Cu alloys with different Al/Cu ratios containing only high abundant rare earth element La were employed for grain boundary diffusion treatment for sintered NdFeB permanent magnets. It is found that Al and Cu contents should be optimized to achieve coercivity enhancement. The coercivity of the magnet was enhanced from 1000 to 1006, 1077 and 1156 kA/m after La70Al10Cu20, La-70 Al15Cu15 and La70Al20Cu10 alloys diffusion, at 800 degrees C for 1 h followed by 500 degrees C for 3 h. The coercivity stability was also improved, indicated by the enhanced temperature coefficient of 13 from -0.63 to -0.61, - 0.61 and - 0.60%/K. Microstructure investigation indicates that the formation of continuous grain boundary phase after diffusion reduces the magnetic exchange interaction and contributes to the enhanced coercivity. After diffusion, the La2O3 phase was observed in both the triple junction and strip grain boundary. La, Al and Cu elements showed different distributions in the magnets. The diffusion coefficients obtained from Fick's second law indicate that La diffuses faster than Al and Cu at 800 degrees C, which explains the various effects of the diffusion sources and different coercivity enhancements by the alloys with different Al/Cu ratios. Although the process should be further optimized, the current results demonstrate that the grain boundary diffusion using low cost La-Al-Cu alloys can improve the microstructure and enhance the coercivity of NdFeB magnets.
机译:与以前的许多报道不同,Al / Cu比不同的仅含有高含量稀土元素La的La-Al-Cu合金被用于烧结NdFeB永磁体的晶界扩散处理。发现应该优化Al和Cu的含量以实现矫顽力的提高。 La70Al10Cu20,La-70 Al15Cu15和La70Al20Cu10合金扩散后,磁体的矫顽力从1000提高到1006、1077和1156 kA / m,在800摄氏度下扩散1小时,然后在500摄氏度下扩散3小时。矫顽力稳定性也得到了改善,这表明温度系数从13的-0.63提高到-0.61,-0.61和-0.60%/ K。显微组织研究表明,扩散后连续晶界相的形成减少了磁交换相互作用,并有助于提高矫顽力。扩散后,在三重结和带状晶界都观察到La2O3相。 La,Al和Cu元素在磁体中的分布不同。从菲克第二定律获得的扩散系数表明,La在800摄氏度下的扩散速度比Al和Cu快,这说明了扩散源的各种影响以及不同Al / Cu比的合金的矫顽力增强作用。尽管应该进一步优化工艺,但目前的结果表明,使用低成本La-Al-Cu合金进行晶界扩散可以改善NdFeB磁体的显微组织并提高矫顽力。

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