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Effects of high magnetic field on the reactive sintering process of Mn-Ga magnetic composites

机译:强磁场对Mn-Ga磁性复合材料反应烧结过程的影响

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摘要

This study focuses on the microstructure and magnetic properties of Mn-20at. Ga composites prepared via high-energy ball milling and subsequent reactive sintering under a high magnetic field (HMF). XRD identified the epsilon-Mn3Ga, ss-Mn0.85Ga0.15, and a-Mn phases, and their fractions determined the magnetic properties of the composites. The results revealed that HMF enhanced the fractions of both epsilon-Mn3Ga and ss-Mn0.85Ga0.15 phases and decreased the fraction of alpha-Mn. The magnetic-field-induced enhancement effect on the reaction was mainly due to a decrease in the activation energy, which mainly affected the phase reaction at the initial stages. However, a HMF of 912 T suppressed the atomic diffusion between Mn and Ga, reducing the reaction-enhancing effect of the magnetic field. Compared with zero-field annealing, the 3 T in-field annealing enhanced the remanence and coercivity of the composite by 44 and 16, respectively. In contrast, the 12 T HMF decreased the remanence but increased the coercivity to its highest value. The coercivity of the 12 T in-field samples reaches 11.09 kOe after 8 h of in-field annealing. After the in-field annealing, subsequent zero-field annealing for an appropriate duration may further increase the remanence and energy product. Enhancing the in-field annealing temperature up to 400 degrees C may increase the coercivity but decrease the remanence considerably.
机译:本研究主要研究Mn-20at的微观结构和磁性能。在高磁场(HMF)下通过高能球磨和随后的反应烧结制备的%Ga复合材料。XRD鉴定了ε-Mn3Ga、ss-Mn0.85Ga0.15和a-Mn相,其组分决定了复合材料的磁性能。结果表明,HMF增强了ε-Mn3Ga和ss-Mn0.85Ga0.15相的组分,降低了α-Mn的组分。磁场感应增强反应的影响主要是由于活化能的降低,主要影响了初始阶段的相反应。然而,912 T的HMF抑制了Mn和Ga之间的原子扩散,降低了磁场的反应增强作用。与零场退火相比,3 T场内退火使复合材料的剩磁和矫顽力分别提高了44%和16%。相比之下,12 T HMF降低了剩磁,但将矫顽力提高到最高值。12 T场内试样经过8 h的场内退火后,矫顽力达到11.09 kOe。在场退火后,随后适当持续时间的零场退火可能会进一步增加剩磁和能量积。将现场退火温度提高到400°C可能会增加矫顽力,但会大大降低剩磁。

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