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Magnetoelastic properties of Nd6Fe13Cu intermetallic compound

机译:Nd6Fe13Cu金属间化合物的磁弹性性能

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Magnetoelastic properties of Nd6Fe13Cu intermetallic compound are reported. To study the magnetoelastic behaviour of this compound, the thermal expansion as well as the longitudinal (λl) and transverse (λt) magnetostriction were measured by using the strain gauge method in the selected temperature range of 80500 K under applied magnetic fields up to 1.5 T. An anomaly and invar-type effects are observed in the linear thermal expansion and α(T) curves at the Néel temperature. The linear spontaneous magnetostriction decreases sharply by approaching the Néel temperature and also shows the short-range magnetic ordering effects when antiferromagneticparamagnetic transition occurs. In the low field region, the absolute values of the anisotropic magnetostriction are small and then start to increase with applied magnetic field. Each isofield curve of the anisotropic magnetostriction passes through a minimum and then approaches to zero with increasing temperature. This magnetostriction compensation arises from the difference in the magnetoelastic coupling constants of the sublattices in this compound.
机译:报道了Nd6Fe13Cu金属间化合物的磁弹性性质。为了研究该化合物的磁弹性行为,在选定的80500 K温度范围内,在不超过1.5 T的磁场下,使用应变仪方法测量了热膨胀以及纵向(λl)和横向(λt)磁致伸缩。在Néel温度下的线性热膨胀和α(T)曲线中观察到异常和殷钢型效应。线性自发磁致伸缩通过接近Néel温度而急剧降低,并且在发生反铁磁顺磁跃迁时也表现出短程磁有序效应。在低磁场区域中,各向异性磁致伸缩的绝对值很小,然后随着施加的磁场而开始增加。各向异性磁致伸缩的每个等场曲线都经过一个最小值,然后随着温度的升高而趋近于零。这种磁致伸缩补偿是由该化合物中亚晶格的磁弹性耦合常数的差异引起的。

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