材料科学
纳米晶材料
矫顽力
剩磁
相(物质)
顺磁性
兴奋剂
晶间腐蚀
磁铁
热稳定性
相变
凝聚态物理
单一领域
核磁共振
磁畴
磁化
磁滞
替代(逻辑)
热的
纳米颗粒
分析化学(期刊)
化学稳定性
磁性形状记忆合金
超顺磁性
铁磁性
磁性纳米粒子
作者
Bang Zhou,Guang Yu,Xue‐Feng Liao,Wei‐Wei Zeng,Qing Zhou,Hong‐Ya Yu,Zhong‐Wu Liu
出处
期刊:Rare Metals
[Springer Science+Business Media]
日期:2025-11-24
卷期号:44 (12): 10607-10620
被引量:1
标识
DOI:10.1007/s12598-025-03655-7
摘要
Abstract Enhancing the hard magnetic properties of Ce–Fe–B‐based magnets remains a significant challenge due to the REFe 2 (RE = rare earth) phase precipitation. Here, Y substitution for Ce and Cu doping is employed to suppress REFe 2 formation and optimize the intrinsic properties of RE 2 Fe 14 B phase. Partial substitution of Ce by Y significantly improves the magnetic properties and thermal stability of (Ce 1− x Y x ) 17 Fe 78 B 6 ( x = 0–0.8, at%) alloys. First‐principles calculations reveal that Y substitution destabilizes the REFe 2 phase, thus inhibiting its formation. Notably, at substitution levels exceeding x > 0.4, the residual REFe 2 phase undergoes a magnetic transition from paramagnetic to ferromagnetic behavior. Subsequent Cu doping in (Ce 0.5 Y 0.5 ) 17 Fe 77.6 Cu 0.4 B 6 alloys further destabilizes the REFe 2 phase and transforms aggregated bulk phases into intergranular structures. This microstructural modification facilitates magnetic decoupling, yielding enhanced magnetic properties with coercivity of 435 kA m −1 , remanence of 0.67 T and maximum energy product of 65.2 kJ m −3 . Micromagnetic simulations confirm the positive roles of tailoring the distribution and magnetic behavior of the REFe 2 phase in enhancing coercivity. Finally, the nanocrystalline (Ce 0.5 Y 0.5 ) 17 Fe 77.6 Cu 0.4 B 6 powders synthesized via industrial over‐quenching/annealing demonstrate a high performance/cost ratio, highlighting their significant potential for cost‐effective permanent magnet applications.
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