Microstructure and magnetic properties of (Nd,Pr,Ce)-Fe-B magnets
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摘要: 為開發低成本燒結釹鐵硼磁體,用30% Ce替代(Nd0.75Pr0.25)32.69Fe66.25B1.06磁體中的Nd和Pr,研究了磁體在燒結及回火過程中的組織結構和磁學性能變化.結果表明,取向壓坯在1030~1080℃燒結2 h后,隨燒結溫度升高,磁學性能下降,燒結溫度為1030℃時綜合磁學性能均最好.燒結態Ce替代磁體的綜合磁學性能優于未替代磁體.一級回火后,相組成和晶粒尺寸基本不變,邊界結構也未發生明顯變化,磁體性能基本不變,或有少量下降.二級回火后,晶界明顯改善,獲得較清晰且平直的晶界,磁體矯頑力均得到大幅提高.Ce替代磁體的剩磁、矯頑力和磁能積均稍低于未替代磁體.Abstract: To develop low-cost sintered Nd-Fe-B magnets, 30% Ce was used to substitute for Nd and Pr in magnets with the nominal compositional (Nd0.75Pr0.25)32.69Fe66.25B1.06. The microstructure and magnetic properties of the magnets were studied during the processes of sintering and tempering. It is found that the magnetic properties of the orientated compacts decrease with the sintering temperature increasing from 1030 to 1080 ℃, and the magnets sintered at 1030 ℃ for 2 h exhibit the best magnetic properties. Compared with the non-substituted magnets, the Ce-substituted magnets show higher magnetic properties. The phase composition and grain size do not show obvious change along boundary structure by one-order tempering, and the magnetic properties of the magnets keep the same, or decrease slightly. By two-order tempering, the eoercivity of the magnets is greatly improved by optimization of boundary microstructure, with more clear and straight boundaries. The remanence, coercivity, and maximum energy product of the Ce-substituted magnets are slightly lower than those of the non-substituted magnets.
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Key words:
- permanent magnets /
- neodymium iron boron alloys /
- sintering /
- microstructure /
- magnetic properties /
- cerium
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