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The effect of distributed exchange parameters on magnetocaloric refrigeration capacity in amorphous and nanocomposite materials

机译:分布交换参数对非晶态和纳米复合材料磁热致冷能力的影响

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摘要

The temperature dependent magnetization of nanocomposite alloys has been fit with a modified Handrich-Kobe equation with an asymmetric exchange fluctuation parameter combined with the Arrott-Noakes equation. The two equations of state are combined to calculate the entropy change in the magnetocaloric effect associated with the ferromagnetic to paramagnetic phase transformation. The complete fit for the M(T) of (Fe70Ni30)88Zr7B4Cunanocompositepowder is accomplished by combining the two theories. We investigate the broadening of the second-order transition arising from asymmetric exchange parameters and resulting from the fluctuations of interatomic spacing found in an amorphous matrix and the asymmetric dependence of exchange energy on interatomic spacing. The magnetic entropy curve revealed extra broadening with a refrigeration capacity (RC) value of 135 J/kg at 5 T, which is comparable to (Fe76Cr8-xMoxCu1B15) ribbons, which have a RC value of 180 J/kg for the same applied field. Broadening of the magnetic entropy can lead to larger RC values and a wider working temperature range, making nanocomposite alloys promising for magnetocaloric applications.
机译:纳米复合合金的温度相关磁化强度已与修正的Handrich-Kobe方程拟合,该方程具有不对称的交换波动参数,并结合了Arrott-Noakes方程。将两个状态方程组合起来,以计算与铁磁到顺磁相变相关的磁热效应的熵变。 (Fe70Ni30)88Zr7B4Cunanocompositepowder的M(T)的完全拟合是通过结合两种理论来完成的。我们研究了由不对称交换参数引起的二阶跃迁的加宽,以及由于在非晶态基质中发现的原子间间距的波动以及交换能量对原子间间距的不对称依赖性而引起的二阶跃迁的加宽。磁熵曲线显示出在5 T时的致冷能力(RC)值为135 J / kg的情况下进一步加宽,这与(Fe76Cr8-xMoxCu1B15)碳带相当,在相同的应用领域,其RC值为180 J / kg 。磁性熵的扩大可以导致更大的RC值和更宽的工作温度范围,从而使纳米复合合金有望用于磁热应用。

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