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首页> 外文期刊>Journal of magnetism and magnetic materials >Experimental determination of the saturation polarization and the anisotropy field in ThMn_(12)-type magnets using the LAFS method
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Experimental determination of the saturation polarization and the anisotropy field in ThMn_(12)-type magnets using the LAFS method

机译:LAFS法实验确定ThMn_(12)型磁体的饱和极化和各向异性场

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摘要

The law of approach to ferromagnetic saturation (LAFS) method is required for the accurate measurement of the magnetic properties of magnetically isotropic materials. In this study, we examined the accuracy of the following two LAFS methods for determining the saturation polarization (J_s) and anisotropy field (H_a) of isotropic magnets: (1) the method based on the relationship between polarization (J) and applied field (H; 1/H~2); and (2) the method based on the relationship between susceptibility (dJ/dH) and 1/H~3. We used an isotropic magnet prepared from a commercial ferrite magnet powder with well-known magnetic properties and low H_a as a standard magnet for evaluating the two LAFS methods. Then, we measured the J_s and H_a values of our -Ti_(0.7) compounds with a ThMn_(12) structure, (Nd_(0.8)Zr_(0.2))(Fe_(0.9)Co_(0.1))_(11.3)Ti_(0.7)N_(1.5) and (Sm_(0.9)Zr_(0.1))(Fe_(0.8)Co_(0.2))_(11.3)Ti_(0.7), including in the high-temperature region (> 373 K), where the reduction of Ha was observed. Finding the adequate maximum magnetic fields, where the J_s and H_a values obtained by the two LAFS methods agree well, is important for the proper application of the method to isotropic magnet samples. The results of the LAFS methods revealed that the J_s values of the new compounds are similar at RT, but higher than that of the Nd_2Fe_(14)B phase in the high-temperature region. Because the -Ti_(0.7) compounds are almost α-(Fe,Co)-phase-free, their H_a values are also higher than that of Nd_2Fe_(14)B over the whole temperature region.
机译:为了精确测量各向同性材料的磁性能,需要采用铁磁饱和法(LAFS)法。在这项研究中,我们研究了以下两种LAFS方法确定各向同性磁体的饱和极化(J_s)和各向异性场(H_a)的准确性:(1)基于极化(J)与施加场之间的关系的方法( H; 1 / H〜2); (2)基于磁化率(dJ / dH)和1 / H〜3之间关系的方法。我们使用由商业铁氧体磁体粉末制备的各向同性磁体作为标准磁体,该磁体具有众所周知的磁性能和低H_a,用于评估这两种LAFS方法。然后,我们测量了具有ThMn_(12)结构(-Nd_(0.8)Zr_(0.2))(Fe_(0.9)Co_(0.1))_(11.3)Ti_的-Ti_(0.7)化合物的J_s和H_a值(0.7)N_(1.5)和(Sm_(0.9)Zr_(0.1))(Fe_(0.8)Co_(0.2))_(11.3)Ti_(0.7),包括高温区域(> 373 K),观察到Ha的减少。找到适当的最大磁场,这是通过两种LAFS方法获得的J_s和H_a值很好吻合的位置,对于将该方法正确地应用到各向同性磁体样品中至关重要。 LAFS方法的结果表明,新化合物在室温下的J_s值相似,但在高温区域比Nd_2Fe_(14)B相的J_s值高。由于-Ti_(0.7)化合物几乎不含α-(Fe,Co)相,因此它们的H_a值在整个温度范围内也高于Nd_2Fe_(14)B。

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