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首页> 外文期刊>Journal of the Serbian Chemical Society >An overstoichiometric Nd-Fe-B hard magnetic material
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An overstoichiometric Nd-Fe-B hard magnetic material

机译:化学计量过量的Nd-Fe-B硬磁材料

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A commercial Nd-rich Nd-Fe-B-based hard magnetic material was studied. The obtained results were compared before and after recording of the thermomagnetic curve up to 800°C. The curve itself showed clearly besides Curie points of the Nd2Fe14B phase and α-Fe also another critical temperature. M?ssbauer spectroscopic (MS) phase analysis and X-Ray diffraction analysis (XRD) showed in addition to the commonly known phases Nd2Fe14B and NdFe4B4 also some paramagnetic and ferromagnetic iron atoms (MS) and Fe17Nd2 intermetallics (XRD). During the exerted thermal treatment, the content of the Nd2Fe14B and NdFe4B4 phases remained almost unchanged, while iron atoms from remnant minor phases built a separate α-Fe phase. The XRD pattern also showed the presence of some minor Nd phase. The results of SQUID magnetic measurements suggest a nanocrystalline decoupled structure of the Nd-rich alloy in the optimized magnetic state. Measurement of the magnetization loop showed, in spite of small changes in the phase composition, that magnetic properties of the quality material deteriorated during the thermal treatment.
机译:研究了商业上富含Nd的Nd-Fe-B基硬磁材料。在记录高达800°C的热磁曲线之前和之后比较所获得的结果。曲线本身清楚地显示了Nd2Fe14B相的居里点和α-Fe的另一个临界温度。 Msssbauer光谱(MS)相分析和X射线衍射分析(XRD)表明,除了众所周知的Nd2Fe14B和NdFe4B4相之外,还存在一些顺磁性和铁磁性铁原子(MS)和Fe17Nd2金属间化合物(XRD)。在施加热处理期间,Nd2Fe14B和NdFe4B4相的含量几乎保持不变,而剩余的次要相中的铁原子则建立了单独的α-Fe相。 XRD图谱还表明存在一些次要的Nd相。 SQUID磁测量的结果表明,处于最佳磁态的富Nd合金的纳米晶解耦结构。磁化回路的测量表明,尽管相组成变化很小,但在热处理过程中,优质材料的磁性能却下降了。

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