含有Ce的磁铁的磁性特性与不同烧结温度的CeFe2相之间的相关性
Qingpeng Shen1,2,3, Munan Yang2,3,4, Ihor Bulyk1
1School of Materials Science and Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.
Materials (Basel, Switzerland)
|November 27, 2024
概括
烧结温度通过影响CeFe2阶段,显著影响磁铁性能. 较高的温度通过增强谷物边界流动性和减少缺陷来改善磁性,如残留性和强制性.
科学领域:
- 材料科学 材料科学 材料科学
- 磁力学 磁力学 是一种
- 金工业是金工业的一个方面.
背景情况:
- 稀土磁铁的磁性取决于它们的微观结构和相位组成.
- 了解CeFe2阶段的作用和烧结过程中的谷物边界行为对于优化磁铁性能至关重要.
研究的目的:
- 研究烧结温度,CeFe2相含量和分布,以及磁铁的磁性特性之间的相关性.
- 阐明微观结构的进化及其对残余和强制性的影响.
主要方法:
- 磁铁在各种温度下烧结,以控制相位形成和微观结构.
- 测量了磁性特性,包括残存和强制性.
- 阶段分析侧重于CeFe2和Ce2Fe17阶段及其分布.
主要成果:
- 较低的烧结温度导致谷物边界相位流量较差,缺陷增加,导致磁性较差.
- 增加烧结温度提高了CeFe2相比,改善了流动性和填充缺陷,从而增加了残余.
- 高温也会增加粒度,这可能会对强制性产生负面影响,而由于优化的粒度边界阶段,在1080°C达到最佳强制性.
结论:
- 烧结温度是控制CeFe2阶段和微观结构以定制磁性特性的关键参数.
- 优化烧结条件,特别是在1080°C左右,可以最大限度地提高强制性,同时保持高余量.
- 微结构控制,包括谷物边界相连续性和缺陷减少,对于高性能磁铁至关重要.
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