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Effect of cooling rate on magnetostriction gradients of Tb0.27Dy0.73Fe1.95 alloys solidified in high magnetic field gradients

机译:冷却速度对在高磁场梯度下凝固的Tb0.27Dy0.73Fe1.95合金的磁致伸缩梯度的影响

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In this work, Tb0.27Dy0.73Fe1.95alloys were solidified in a high magnetic field gradient (8.8 T, -565 T2/m) at various cooling rates. Changes in the magnetostriction,crystal orientation, and magnetization of the alloys were investigated. The application of the magnetic field gradient has a strong influence on the magnetostrictive performance. At lower cooling rates, the maximum magnetostriction increases gradually with depth from the top surface of the alloys. However, the effect of the magnetic field gradient is strongly dependent on the cooling rate. With increasing cooling rate, the magnetostriction gradient decreases. The magnetization measurement shows that the saturation magnetization at lower cooling rates increases gradually with depth from the top surface of the alloys. However, with increasing cooling rate, the increase in the saturation magnetization is reduced. The XRDmeasurement results show that the orientation behavior of the (Tb, Dy)Fe2 phase exhibits a continuous change throughout the alloys at lower cooling rates, but is almost unchanged at higher cooling rates. The change in the magnetostriction of the alloys can be attributed to the changes in crystal orientation and the amount of the (Tb, Dy)Fe2 phase in the alloys caused by both the magnetic field gradient and cooling rate.
机译:在这项工作中,Tb0.27Dy0.73Fe1.95合金在各种冷却速率下以高磁场梯度(8.8 T,-565 T2 / m)凝固。研究了合金的磁致伸缩,晶体取向和磁化强度的变化。磁场梯度的施加对磁致伸缩性能有很大影响。在较低的冷却速率下,最大磁致伸缩随着从合金顶面开始的深度而逐渐增加。但是,磁场梯度的影响在很大程度上取决于冷却速率。随着冷却速率的增加,磁致伸缩梯度减小。磁化强度测量表明,在较低冷却速率下,饱和磁化强度随距合金顶面的深度而逐渐增加。但是,随着冷却速度的增加,饱和磁化强度的增加减小。 XRD测量结果表明,(Tb,Dy)Fe2相的取向行为在较低的冷却速率下在整个合金中表现出连续变化,但在较高的冷却速率下几乎不变。合金的磁致伸缩的变化可归因于由磁场梯度和冷却速率引起的合金中的晶体取向和(Tb,Dy)Fe2相含量的变化。

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