矫顽力
材料科学
剩磁
位错
磁铁
冶金
凝聚态物理
复合材料
磁化
磁场
机械工程
物理
量子力学
工程类
作者
Mingyao Hu,Yangkun He,Yang Liu,Ziheng Liu,Longlong Xi,Lei Yang,Tianli Zhang,Dazhuang Kang,Si Chen,Mingjing Zhao,Chengbao Jiang
标识
DOI:10.1002/adfm.202400305
摘要
Abstract Iron‐rich 2:17‐type SmCo magnets are expected to achieve high performance and relatively low cost. However, inhomogeneous cellular structures usually exist in iron‐rich magnets, resulting in a drastic reduction in coercivity and energy product. Herein, a strategy is proposed to regulate the dislocation by decreasing the Sm content and extending the solid‐solution duration in precursor of iron‐rich SmCo magnet. High‐density dislocations in precursor contributed to 1:5H nucleation, leading to uniform cellular structures in final magnets. As a result, a remarkable intrinsic coercivity of 1.50 T and one of the highest remanences (1.24 T) are simultaneously achieved in the iron‐rich Sm 25 Co 42 Fe 26 Cu 5 Zr 2 (wt%) magnet. This study provides valuable insights into the design and development of iron‐rich 2:17‐type SmCo magnets.
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