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Rare earth permanent magnets prepared by hot deformation process

机译:通过热变形工艺制备的稀土永磁体

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摘要

Hot deformation is one of the primary methods for fabricating anisotropic rare earth permanent magnets.Firstly,rapidly quenched powder flakes with a nanocrystal structure are condensed into fully dense isotropic precursors using the hot-pressing process.The prepared isotropic precursors are then hot-deformed to produce high-anisotropy uniaxial bulk rare earth permanent magnets and a highly textured structure is produced via this process.The resulting magnets possess many advantages such as near-net-shape,outstanding corrosion resistance,and ultrafine-grain structure.The influence of the preparation parameters utilized in the hot-pressing and deformation processes on the magnetic properties and microstructure of the permanent magnets are systemically summarized in this report.As a near-net-shape technique,the hot deformation process has notable advantages with regard to the production of irregular shapes,especially for radially oriented ringshaped magnets with high length-diameter ratios or thin walls.The difficulties associated with the fabrication of crack-free,homogeneous,and non-decentered ring-shaped magnets are substantially resolved through an emphasis on mold design,adjustment of deformation parameters,and application of theoretical simulation.Considering the characteristics of hotdeformed magnets which include grain shape and size,anisotropic distribution of intergranular phases,etc.,investigation and improvement of the mechanical and electric properties,in addition to thermal stability,with the objective of improving the application of hot-deformed magnets or ring-shaped magnets,is of practical significance.
机译:热变形是制备各向异性稀土永磁体的主要方法之一。首先,通过热压工艺将具有纳米晶体结构的快速淬火粉末片凝结为完全致密的各向同性前驱体,然后将制备的各向同性前驱体热变形为制备高各向异性的单轴大块稀土永磁体,并通过该工艺制备出高织构结构。所得的磁体具有近净形,优异的耐蚀性和超细晶结构等优点。本报告系统地总结了在热压和变形过程中使用的有关永磁体的磁性和微观结构的参数。作为近净形技术,热变形过程在产生不规则形方面具有明显的优势。形状,特别是长径比大的径向环形磁铁通过强调模具设计,调整形变参数和应用理论模拟,可以基本上解决与无裂纹,均匀和无偏心的环形磁体制造相关的困难。包括晶粒形状和尺寸,晶间相的各向异性分布等在内的热变形磁体的研究,机械性能和电性能的研究和改善,以及热稳定性的提高,目的是改善热变形磁体或环形磁体的应用形磁铁具有实际意义。

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  • 来源
    《中国物理:英文版》 |2018年第11期|71-91|共21页
  • 作者单位

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

    University of Dayton, Dayton, OH, USA;

    CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Material Technology and Engineering,Chinese Academy of Sciences, Ningbo 315201, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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