Dependence of Magnetic Properties of As-Prepared Nanocrystalline Ni2MnGa Glass-Coated Microwires on the Geometrical Aspect Ratio

M. Salaheldeen, V. Zhukova, R. López Antón, A. Zhukov
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Abstract

We have prepared NiMnGa glass-coated microwires with different geometrical aspect ratios, ρ = dmetal/Dtotal (dmetal—diameter of metallic nucleus, and Dtotal—total diameter). The structure and magnetic properties are investigated in a wide range of temperatures and magnetic fields. The XRD analysis illustrates stable microstructure in the range of ρ from 0.25 to 0.60. The estimations of average grain size and crystalline phase content evidence a remarkable variation as the ρ-ratio sweeps from 0.25 to 0.60. Thus, the microwires with the lowest aspect ratio, i.e., ρ = 0.25, show the smallest average grain size and the highest crystalline phase content. This change in the microstructural properties correlates with dramatic changes in the magnetic properties. Hence, the sample with the lowest ρ-ratio exhibits an extremely high value of the coercivity, Hc, compared to the value for the sample with the largest ρ-ratio (2989 Oe and 10 Oe, respectively, i.e., almost 300 times higher). In addition, a similar trend is observed for the spontaneous exchange bias phenomena, with an exchange bias field, Hex, of 120 Oe for the sample with ρ = 0.25 compared to a Hex = 12.5 Oe for the sample with ρ = 0.60. However, the thermomagnetic curves (field-cooled—FC and field-heating—FH) show similar magnetic behavior for all the samples. Meanwhile, FC and FH curves measured at low magnetic fields show negative values for ρ = 0.25, whereas positive values are found for the other samples. The obtained results illustrate the substantial effect of the internal stresses on microstructure and magnetic properties, which leads to magnetic hardening of samples with low aspect ratio.
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砷制备的纳米晶 Ni2MnGa 玻璃涂层微丝的磁性能与几何长宽比的关系
我们制备了具有不同几何纵横比 ρ = dmetal/Dtotal(dmetal-金属核直径,Dtotal-总直径)的镍锰镓玻璃涂层微丝。在广泛的温度和磁场范围内对其结构和磁性能进行了研究。XRD 分析表明,在 0.25 至 0.60 的 ρ 范围内,微观结构稳定。平均晶粒大小和结晶相含量的估算结果表明,当 ρ 比值从 0.25 到 0.60 之间变化时,晶粒大小和结晶相含量会发生显著变化。因此,纵横比最小的微丝(即 ρ = 0.25)显示出最小的平均晶粒尺寸和最高的结晶相含量。微结构特性的这种变化与磁性能的巨大变化相关。因此,与ρ比最大的样品相比,ρ比最小的样品显示出极高的矫顽力 Hc 值(分别为 2989 Oe 和 10 Oe,即高出近 300 倍)。此外,自发交换偏置现象也有类似的趋势,ρ = 0.25 的样品的交换偏置场 Hex 为 120 Oe,而 ρ = 0.60 的样品的 Hex = 12.5 Oe。不过,所有样品的热磁曲线(场冷却-FC 和场加热-FH)都显示出相似的磁性。同时,在低磁场下测量的 FC 和 FH 曲线在 ρ = 0.25 时显示负值,而其他样品则显示正值。所得结果表明,内应力对微观结构和磁性能有很大影响,从而导致低纵横比样品的磁硬化。
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