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On the role of magnetically soft phase in magnetization reversal processes of nanocomposite Sm_2Fe_(15)Ga_2C_x/α-Fe permanent magnetic materials

机译:磁性软相在纳米复合Sm_2Fe_(15)Ga_2C_x /α-Fe永磁材料的磁化反转过程中的作用

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The magnetic properties and magnetization reversal processes of nanocomposite Sm_2Fe_(15)Ga_2C_x/α-Fe permanent magnet materials have been investigated. Remanence increases and intrinsic coercivity decreases drastically with increasing magnetically soft phase α-Fe content. About 5 vol.% excess of α-Fe results in a significant increase in maximum energy product from 5.6 MGOe for single-phase nanocrystalline alloys to 8.2 MGOe for two-phase nanocomposites. A further increase in α-Fe content leads to decrease the maximum energy product owing to the rapid decrease of coercivity and the deterioration of the squareness of the hysteresis loop. The nucleation field for reversing the magnetically hard phase decreases monotically with increasing α-Fe content. Remanence enhancement, a high degree of reversibility and high ratios of remanence coercivity to intrinsic coercivity are observed in two-phase nanocomposites.
机译:研究了纳米复合Sm_2Fe_(15)Ga_2C_x /α-Fe永磁材料的磁性能和磁化反转过程。随着软磁相α-Fe含量的增加,剩磁增加,固有矫顽力急剧下降。 α-Fe过量约5%(体积)会导致最大能量乘积从单相纳米晶合金的5.6 MGOe显着增加到两相纳米复合材料的8.2 MGOe。由于矫顽力的迅速降低和磁滞回线的矩形性的恶化,α-Fe含量的进一步增加导致最大能量乘积的降低。随着α-Fe含量的增加,用于逆转硬磁相的成核场单调减小。在两相纳米复合材料中观察到剩磁增强,高度可逆性以及剩磁矫顽力与固有矫顽力的比率高。

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