Heusler化合物Co2MnZ (Z=Ga, Ge, Si)制备工艺对其晶序和磁性能的影响研究

Hamayoon Rahmani, Mohammad Jawad Hamta, Ibrahim Tawana, Hussain Aziz
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引用次数: 0

摘要

研究了电弧熔炼、机械合金化和烘烤等不同工艺对Co2MnSi、Co2MnGa和Co2MnGe化合物结晶和磁性行为的影响。采用电弧熔炼法制备了Co2MnSi、Co2MnGe和Co2MnGa化合物样品,研究了机械合金化和退火工艺对产品的影响。结果表明,在制备过程中采用不同的工艺会导致样品的结晶和磁性行为不同。其中一种情况是,与Slater和Pauling的预测相比,制备样品中晶体顺序与晶格参数大小的相关性及其对降低饱和磁化强度的影响。在Co2MnSi成分的制备过程中,机械合金化过程引起的顺序变化导致饱和磁化强度下降约14%。Co2MnGe组成的电弧熔合机械合金化样品的矫顽力低于期望值,这是由于样品中晶体尺寸小导致样品的磁各向异性较低,在蒸煮过程中得到补偿。例如,在烘烤之前进行研磨过程会导致晶体顺序的变化,从而降低样品的饱和磁化强度。最后的烘烤增加了晶体的尺寸,减少了应变。电弧熔化后研磨得到的样品由于晶体较小,矫顽力比另外两种样品高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying The Effect of The Manufacturing Process of Heusler Compounds Co2MnZ (Z=Ga, Ge, Si) on its Crystal Order and Magnetic Properties
The effect of different manufacturing processes, such as arc melting, mechanical alloying, and baking, on the crystalline and magnetic behavior of Co2MnSi, Co2MnGa, and Co2MnGe compounds was investigated. Samples of Co2MnSi, Co2MnGe, and Co2MnGa compounds were produced using the arc melting method and the effect of mechanical alloying and annealing processes on the manufactured products was investigated. The results showed that the use of different processes during manufacturing leads to different crystalline and magnetic behaviors of the sample. One of these cases is the correlation of the crystal order with the lattice parameter size in the produced samples and its effect on reducing the saturation magnetization compared to Slater and Pauling's prediction. Also, the change of order induced by the mechanical alloying process in the production of Co2MnSi composition has led to a drop of about 14% in saturation magnetization. The coercivity in the sample produced by arc melting and mechanical alloying in Co2MnGe composition is lower than the expected value, which was attributed to the low magnetic anisotropy of the sample due to the small size of the crystals in this sample, which is compensated in the cooking process. For example, performing the grinding process before baking leads to a change in the crystal order and, consequently, to a decrease in the saturation magnetization of the sample. The final baking increases the size of the crystals and reduces the strain. The sample obtained from grinding after arc melting had more coercivity than the other two samples due to having smaller crystals.
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