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首页> 外文期刊>Journal of magnetism and magnetic materials >Interaction mechanism, magnetic properties and microstructure of Ce-Fe-B/Alnico spark plasma sintered magnets
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Interaction mechanism, magnetic properties and microstructure of Ce-Fe-B/Alnico spark plasma sintered magnets

机译:Ce-Fe-B / Alnico火花等离子体烧结磁体的相互作用机理,磁性和微观结构

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摘要

By combining rare earth-based Ce-Fe-B and rare earth free Alnico powders, composite Ce-Fe-B/Alnico spark plasma sintered (SPS) magnets have been fabricated and reported for the first time. It is observed that the two phases exit in the alloys interacting magnetostatically. The Alnico phase constitutes α_1 and α_2 phases as a consequence of spinodal decomposition process, while the Ce-Fe-B phase contained Ce_2Fe_(14)B and CeFe_2 phases. By increasing the content of Alnico phase, the remanence magnetization and the maximum energy density of the composite alloys increased owing to the higher saturation magnetization of Alnico phase. Magnetic properties, such as remanence magnetization J_s = 0.93 T, intrinsic coercivity H_(cj) = 202 kA/m and maximum energy density (BH)_(max) = 19.8 kJ/m~3 were obtained in spark plasma sintered composite magnets containing 15 wt% Alnico. The recoil loops demonstrated the presence of anisotropy variations in the alloys specifically at high applied magnetic field. Analysis of the Curie temperature and elemental analysis validated that the constituent phases of SPS magnets exist in the alloys. This work may shed light on the development of composite magnets with distinct phases and enhanced magnetic properties.
机译:通过组合稀土的CE-FE-B和稀土免疫玻璃粉末,首次制造并报告了复合CE-FE-B / Alnico Spark等离子体烧结(SPS)磁铁。观察到,两相出在静静电相互作用的合金中出口。 alnico相是由于旋光膜分解过程的结果构成α_1和α_2阶段,而CE-Fe-B相含有Ce_2Fe_(14)B和Cefe_2相。通过增加Alnico阶段的含量,由于Alnico相的饱和磁化较高的饱和磁化强度,复合合金的剩磁磁化和最大能量密度增加。磁性,例如剩磁磁化J_S = 0.93 T,在火花等离子体烧结复合磁体中获得了固有矫顽力H_(CJ)= 202kA / m和最大能量密度(BH)_(MAX)= 19.8kJ / m〜3 15%wt%alnico。 Recoil LOOPS证明了特异性在高施加的磁场处的合金中的各向异性变化。居里温度和元素分析的分析验证了合金中存在SPS磁体的组成阶段。这项工作可以在具有不同阶段的复合磁体的开发和增强的磁性性能下阐明。

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  • 来源
    《Journal of magnetism and magnetic materials》 |2021年第11期|168237.1-168237.7|共7页
  • 作者单位

    Jiangxi Key Laboratory for Rare Earth Magnetic Materials and Devices College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and Physics College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China;

    Jiangxi Key Laboratory for Rare Earth Magnetic Materials and Devices College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China Fujian Changting Golden Dragon Rare-Earth Co. Ltd. Longyan 366300 PR China;

    Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and Physics College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China;

    Jiangxi Key Laboratory for Rare Earth Magnetic Materials and Devices College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and Physics College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China;

    Jiangxi Key Laboratory for Rare Earth Magnetic Materials and Devices College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and Physics College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China;

    Jiangxi Key Laboratory for Rare Earth Magnetic Materials and Devices College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and Physics College of Rare Earths Jiangxi University of Science and Technology Ganzhou 341000 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetic materials; Nanocomposite magnets; Ce-Fe-B alloys; Alnico alloys; Magnetic properties; Magnetostatic interactions;

    机译:磁性材料;纳米复合磁体;CE-FE-B合金;Alnico合金;磁性;磁静物相互作用;

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