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Preparation of Nd-Fe-B sintered magnets from HDDR-processed powder

机译:用HDDR处理粉末制备Nd-Fe-B烧结磁铁

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摘要

The electric-current sintering technique was used to fully density hydrogenation-disproportionation-desorption-recombination (HDDR)-processed Nd-Fe-B powder at temperatures below the grain growth temperature in order to produce high-coercive bulk magnets. However, the sintered magnets exhibited anomalous coercivity reduction that depended on sintered density. Reheating examination of the sintered magnets revealed that the reduced coercivity was increased in proportion to the heating temperature, resulting in complete recovery of coercivity. As a result, the combination of electric-current sintering and post-annealing produced sintered magnets with a coercivity of 15 kOe. Scanning and transmission electron microscopy revealed no evidence that associated the anomalous coercivity reduction and recovery with grain boundary morphology. On the other hand, various HDDR powders with different particle sizes were sintered, and finer powders yielded lower coercivity after sintering, implying that the anomalous coercivity reduction was associated with particle surface oxides of the raw powder.
机译:电流烧结技术用于在低于晶粒生长温度的温度下完全密度加氢-歧化-解吸-复合(HDDR)处理的Nd-Fe-B粉末,以生产高矫顽力的块状磁体。然而,烧结磁体表现出异常矫顽力降低,这取决于烧结密度。烧结磁铁的再加热检查表明,降低的矫顽力与加热温度成比例地增加,导致矫顽力完全恢复。结果,电流烧结和后退火的组合产生了矫顽力为15kOe的烧结磁体。扫描和透射电子显微镜显示没有证据表明异常矫顽力降低和恢复与晶界形态有关。另一方面,烧结了具有不同粒径的各种HDDR粉末,并且更细的粉末在烧结后产生较低的矫顽力,这意味着异常矫顽力降低与原料粉末的颗粒表面氧化物有关。

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