首页> 外文期刊>Journal of Applied Physics >Magnetic properties of Tb_(0.28)Dy_(0.57)Ho_(0.15)Fe_(2-x)Mn_x(x= 0,0.05,0.1,0.15,0.2)
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Magnetic properties of Tb_(0.28)Dy_(0.57)Ho_(0.15)Fe_(2-x)Mn_x(x= 0,0.05,0.1,0.15,0.2)

机译:Tb_(0.28)Dy_(0.57)Ho_(0.15)Fe_(2-x)Mn_x(x = 0,0.05,0.1,0.15,0.2)的磁性

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摘要

The pseudobinary Laves phase R~1R~2Fe~2 magnetostrictive compounds have one degree of freedom by which the largest anisotropy constant K_1 is minimized to obtain the best performing material. However, by including a third rare earth element, additional degree of freedom is obtained, which allows a better way to choose a material for application. In the present study, Ho has been chosen as it exhibits positive magnetostriction, similar to Tb and Dy. Substitution of Mn for Fe leads to the realization of improved magnetostriction values and reduction in the anisotropy. In the present paper magnetic properties of Tb_(0.28)Dy_(0.57)Ho_(0.15)Fe_(2-x)Mn_x(x=0,0.05,0.1,0.15,0.2) are presented. The compounds have formed in single phase with cubic Laves phase structure. The lattice parameter is found to increase from 7.327 to 7.347 A with increasing the Mn concentration to 0.2. The Fe/Mn-Fe/Mn distance is less than 2.66 A, the critical distance below which the Fe and Mn moments could be antiferromagnetically ordered, leading to a decrease in the Curie temperature from 592 to 537 K. At 80 K, saturation magnetization is found to increase from 120 emu/g (x =0) to 125 emu/g (x=0.1) and then to decrease to 105 emu/g (x=0.2). The magnetostriction increases from 1000 X 10~(-6) (x=0) to 1050 X 10~(-6) (x=0.1) with Mn and decreases to 775 X 10~(-6) with further increment of Mn (x=0.2). Spontaneous magnetostriction is found by the splitting of the (440) peak.
机译:伪二元Laves相R〜1R〜2Fe〜2磁致伸缩化合物具有一个自由度,通过该自由度可最大程度地减小各向异性常数K_1,以获得最佳性能的材料。但是,通过包含第三种稀土元素,可以获得额外的自由度,这为选择应用材料提供了更好的方法。在本研究中,选择Ho的原因是它表现出正磁致伸缩,类似于Tb和Dy。用Mn代替Fe可实现改善的磁致伸缩值并减小各向异性。在本文中提出了Tb_(0.28)Dy_(0.57)Ho_(0.15)Fe_(2-x)Mn_x(x = 0,0.05,0.1,0.15,0.2)的磁性能。这些化合物已形成具有立方Laves相结构的单相。发现随着Mn浓度增加到0.2,晶格参数从7.327增加到7.347A。 Fe / Mn-Fe / Mn距离小于2.66 A,在临界距离以下,Fe和Mn矩可以反铁磁排序,从而导致居里温度从592 K降低到537K。在80 K时,饱和磁化强度发现其从120emu / g(x = 0)增加到125emu / g(x = 0.1),然后降低到105emu / g(x = 0.2)。随着Mn的增加,磁致伸缩从1000 X 10〜(-6)(x = 0)增加到1050 X 10〜(-6)(x = 0.1),随着Mn的进一步增加减小到775 X 10〜(-6)。 x = 0.2)。通过(440)峰分裂发现自发磁致伸缩。

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