微观结构调整对烧结Nd-Fe-B永磁氧化特性和磁性能的影响

    Oxidation Behavior and Magnetic Property of Nd-Fe-B Permanent Magnets With Modified Microstructure

    • 摘要: 采用放电等离子烧结技术(SPS)制备了新型Nd-Fe-B磁体,采用传统烧结工艺制备了相同成分的磁体.测量了磁体在不同温度下的氧化动力学、不可逆损失以及氧化前后磁性能的变化.利用扫描电子显微镜分析了磁体氧化前后的显微组织结构.结果表明,高温氧化后SPS磁体的磁性能损失低于传统磁体.显微组织观察表明新型磁体具有独特的显微组织特征:主相Nd2Fe14B晶粒细小、均匀;富钕相在主相晶粒边界上分布较少,主要集中在三角晶界处.这种组织结构有效地抑制了磁体沿富钕相发生晶间氧化的过程,因此磁体具有良好的耐氧化性能.

       

      Abstract: Anisotropic Nd-Fe -B magnet was prepared by Spark Plasma Sintering technique. Magnet with same composition was produced using conventional sintering method for comparison. The magnetic property before and after oxidation test of both magnets were studied. The oxidation kinetics and irreversible losses of both magnets under different temperature were also investigated at the same time. The microstructures before and after oxidation test were observed with scanning electron microscope. Compared with conventional sintered Nd -Fe -B magnets,the SPS magnets process less reduction of magnetic properties after high temperature oxidation test. Microstructure observation shows that SPS magnet has original microstructure,i. e. the grain size of the Nd2Fe14 B main phase is fine and uniform,and the fine Nd-rich phase does not form along the grain boundaries of main phase,but agglomerates into the triple junctions. Therefore,the pathways for oxidtion propagation are restricted and the inter-granular oxidation process though Nd-rich phase in the magnet is suppressed effectively. As a result,the SPS Nd -Fe -B magnet possesses excellent oxidation resistance.

       

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