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Comparative study between melted and mechanically alloyed samples of the Fe50Mn10Al40 nanostructured system

机译:Fe50 Mn10 Al40 纳米结构体系的熔融和机械合金化样品的比较研究

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摘要

Nanostructured powders of melted and 48 h-mechanically alloyed (MA) samples of the Fe50Mn10Al40 system were studied by XRD, SEM and M?ssbauer spectroscopy (MS), and their properties were compared. The samples present BCC structure with similar mean lattice parameter (near 2.92 ?) and grain size (around 22 nm). The MA sample presents additionally the α-Fe phase. M?ssbauer spectra of the samples present a hyperfine field distribution (HFD), a broad paramagnetic (P) site and a sextet showing that the BCC ternary phase is disordered with Fe sites in environments rich in Fe (HFD) and rich in Al and Mn (P), respectively. The mean hyperfine magnetic field vs. temperature curve of melted sample presents two kinks, one at 28 K and other at 210 K and a Curie temperature at 340 K. A similar curve is observed for the milled sample but the kinks occur at 65 and 265K. M?ssbauer spectra at different temperatures with and without applied field permit to conclude that the low temperature anomaly corresponds to the freezing temperature of a re-entrant spin-glass phase (RSG) and that of the second one corresponds to a blocking temperature of a superparamagnetic (SP) phase. These phases are possible in the samples due to their disordered character induced by the preparation conditions and the competitive interactions of the Fe and Mn atoms. The enhancement of the magnetic behaviour of the MA sample is due its larger disorder induced by the preparation method that can also explain the increase of the RSG and SP transition temperatures.
机译:通过XRD,SEM和Msssbauer光谱(MS)研究了Fe50 Mn10 Al40 系统的熔融和48 h机械合金化(MA)样品的纳米结构粉末及其性能比较。样品呈现出的BCC结构具有相似的平均晶格参数(约2.92Ω)和晶粒尺寸(约22nm)。 MA样品另外呈现α-Fe相。样品的Msssbauer光谱呈现超精细场分布(HFD),宽顺磁性(P)位点和六重峰,表明BCC三元相在富含Fe(HFD)和Al和Mn(P)分别。熔化样品的平均超精细磁场与温度的关系曲线有两种扭结,一种为28 K,另一种为210 K,居里温度为340K。研磨后的样品观察到类似的曲线,但扭结发生在65和265K 。在有和没有施加电场的情况下,在不同温度下的M?ssbauer光谱可以得出结论,低温异常对应于折返自旋玻璃相(RSG)的凝固温度,而第二异常对应于重结晶自旋玻璃相的冻结温度。超顺磁性(SP)相。由于制备条件和铁,锰原子的竞争性相互作用引起的无序特性,这些相在样品中是可能的。 MA样品的磁行为增强是由于制备方法引起的较大混乱,这也可以解释RSG和SP转变温度的升高。

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  • 来源
    《Hyperfine Interactions 》 |2008年第3期| 97-103| 共7页
  • 作者单位

    Departamento de Ciencias Básicas Universidad Pontificia Bolivariana Seccional Bucaramanga A. A. 2932 Bucaramanga Colombia;

    Departamento de Física Universidad del Valle A. A. 25360 Cali Colombia;

    Departamento de Física Universidad del Valle A. A. 25360 Cali Colombia;

    Laboratoire de Physique de l‘Etat Condensé UMR CNRS 6087 Université du Maine 72085 Le Mans Cedex 9 France;

    Instituto de Magnetismo Aplicado Universidad Complutense de Madrid P.O. Box 155 Las Rozas 28230 Madrid Spain;

    Instituto de Magnetismo Aplicado Universidad Complutense de Madrid P.O. Box 155 Las Rozas 28230 Madrid Spain;

    Unidad Asociada ICMM-IMA Apdo. 155 Las Rozas 28230 Madrid Spain;

    Instituto de Química Física Rocasolano CSIC C/Serrano119 28006 Madrid Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    M?ssbauer spectrometry; Fe50Mn10Al40 nanostructured system; Hyperfine field distribution; XRD;

    机译:M?ssbauer光谱法;Fe50Mn10Al40纳米结构体系;超精细场分布;X射线衍射;

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