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首页> 外文期刊>Archives of Metallurgy and Materials >Microstructure and Magnetic Properties of NdFeB Sintered Magnets Diffusion-Treated with Cu/Al Mixed Dyco Alloy-Powder
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Microstructure and Magnetic Properties of NdFeB Sintered Magnets Diffusion-Treated with Cu/Al Mixed Dyco Alloy-Powder

机译:Cu / Al混合Dyco合金粉扩散处理的NdFeB烧结磁体的组织和磁性能

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摘要

We investigated the microstructural and magnetic property changes of DyCo, Cu + DyCo, and Al + DyCo diffusion-treated NdFeB sintered magnets. The coercivity of all diffusion treated magnet was increased at 880oC of 1st post annealing(PA), by 6.1 kOe in Cu and 7.0 kOe in Al mixed DyCo coated magnets, whereas this increment was found to be relatively low (3.9 kOe) in the magnet coated with DyCo only. The diffusivity and diffusion depth of Dy were increased in those magnets which were treated with Cu or Al mixed DyCo, mainly due to comparatively easy diffusion path provided by Cu and Al because of their solubility with Ndrich grain boundary phase. The formation of Cu/Al-rich grain boundary phase might have enhanced the diffusivity of Dy-atoms. Moreover, relatively a large number of Dy atoms reached into the magnet and mostly segregated at the interface of Nd2Fe14B and grain boundary phases covering Nd2Fe14B grains so that the core-shell type structures were developed. The formation of highly anisotropic (Nd, Dy)2Fe14B phase layer, which acted as the shell in the core-shell type structure so as to prevent the reverse domain movement, was the cause of enhancing the coercivity of diffusion treated NdFeB magnets. Segregation of cobalt in Nd-rich TJP followed by the formation of Co-rich phase was beneficial for the coercivity enhancement, resulting in the stabilization of the metastable c-Nd2O3 phase.
机译:我们研究了DyCo,Cu + DyCo和Al + DyCo扩散处理的NdFeB烧结磁体的微观结构和磁性能变化。所有经过扩散处理的磁体的矫顽力在第一次退火(PA)时都在880oC时增加,Cu中增加6.1 kOe,Al混合DyCo涂层的磁体中增加7.0 kOe,而磁体中的增加相对较低(3.9 kOe)仅涂有DyCo。在用Cu或Al混合DyCo处理的磁体中,Dy的扩散率和扩散深度增加了,这主要是由于Cu和Al在Ndrich晶界相中的溶解度,使得它们提供了相对容易的扩散路径。富Cu / Al晶界相的形成可能增强了Dy原子的扩散性。此外,相对大量的Dy原子进入磁体,并且大部分在Nd2Fe14B和覆盖Nd2Fe14B晶粒的晶界相的界面处偏析,从而形成了核-壳型结构。形成高各向异性的(Nd,Dy)2Fe14B相层的作用是在核-壳型结构中充当壳层,以防止反向畴移动,这是增强扩散处理的NdFeB磁体矫顽力的原因。钴在富Nd的TJP中的分离以及富钴相的形成有利于矫顽力的提高,从而使亚稳态c-Nd2O3相稳定。

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