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Structure, spin reorientation and M(o)ssbauer effect studies of Tb0.3Dy0.7(Fe1-xAlx)1.95 alloys

机译:结构,旋转重新定位和M(o)Ssbauer效应研究Tb0.3dy0.7(Fe1-Xalx)1.95合金

摘要

The effect of Al substitution for Fe on crystal structure, magnetostriction and spontaneous magnetostriction, anisotropy and spin reorientation of a series of polycrystalline Tb0.3Dy0.7(Fe1-xAlx)1.95 alloys (x = 0, 0.05, 0.1, 0.15, 0.20, 0.25, 0.30, 0.35) at room temperature and 77 K was investigated systematically. It was found that the primary phase of Tb0.3Dy0.7(Fe1-xAlx)1.95 is the MgCu2-type cubic Laves phase structure when x < 0.4 and the lattice constant a of Tb0.3Dy0.7(Fe1-xAlx)1.95 increases approximately and monotonically with the increase of x. The substitution of Al leads to the fact that the magnetostriction ( inceases slightly in a low magnetic field (H ≤ 40 kA/m), but decreases sharply and is easily close to saturation in a high applied field as x increases, showing that a small amount of Al substitution is beneficial to a decrease in the magnetocrystalline anisotropy. It was also found that the spontaneous magnetostriction (ζ)111 decreases greatly with x increasing. The analysis of the M(o)ssbauer spectra indicated that the easy magnetization direction in the {110} plane deviates slightly from the main axis of symmetry with the changes of composition and temperature, namely spin reorientation. A small amount of non-magnetic phase exists for x = 0.15 in Tb0.3Dy0.7(Fe1-xAlx)1.95 alloys and the alloys become paramagnetic for x > 0.15 at room temperture, but at 77 K the alloys still remain magnetic phase even for x = 0.2. At room temperature and 77 K, the hyperfine field decreases and the isomer shifts increase with Al concentration increasing.
机译:Al替代Fe对晶体结构,磁致伸缩和自发磁致传神,各向异性和自旋重新定向的一系列多晶Tb0.3dy0.7(Fe1-Xalx)1.95合金(x = 0,0.05,0.1,0.15,0.20,在室温下为0.25,0.30,0.35),系统地研究了77 k。发现TB0.3Dy0.7(Fe1-Xalx)1.95的初级相是当X <0.4和TB0.3Dy0.7(Fe1-Xalx)1.95增加时的X <0.4和晶格常数A时的MgCu2型立方熔接相结构随着x的增加大致和单调。 Al的替代导致磁致伸缩(略微在低磁场中的侵略性(H≤40k/ m),但随着x的增加,急剧下降并且易于近距离饱和,显示出小的Al取代的量有益于磁镀晶各向异性的降低。还发现自发磁致伸缩(ζ)111随着X增加而大大降低。M(O)SSBauer光谱的分析表明易于磁化方向{110}平面略微偏离了组合物和温度的变化,即旋转重新定位的变化。X = 0.15在TB0.3Dy0.7(Fe1-Xalx)1.95合金中存在少量的非磁性相在室温下,合金变为X> 0.15的顺磁性,但在77 k下,合金仍然保持磁相,即使对于x = 0.2,也可以保持磁相。在室温和77 k时,Hyperfine场降低,并且ISOMER随着AL Conce的增加方案增加。

著录项

  • 来源
  • 作者

  • 作者单位

    Key Laboratory of Opto-Electronic Technology and Intelligent Control Ministry of Education Lanzhou Jiaotong University Lanzhou 730070 China;

    Institute of Electronic Information Science and Technology Lanzhou Teachers College Lanzhou 730070 China;

    State Key Lab. of Advanced Non-Ferrous Materials Gansu Province Lanzhou University of Technology Lanzhou 730050 China;

    Key Laboratory of Opto-Electronic Technology and Intelligent Control Ministry of Education Lanzhou Jiaotong University Lanzhou 730070 China;

    Key laboratory for Magnetism and Magnetic Materials Ministry of Education Lanzhou University Lanzhou 730000 China;

    Key Laboratory of Opto-Electronic Technology and Intelligent Control Ministry of Education Lanzhou Jiaotong University Lanzhou 730070 China;

    Key laboratory for Magnetism and Magnetic Materials Ministry of Education Lanzhou University Lanzhou 730000 China;

    State Key Lab. of Advanced Non-Ferrous Materials Gansu Province Lanzhou University of Technology Lanzhou 730050 China;

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  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 金属学与热处理;
  • 关键词

    magnetostriction; cubic Laves phase; spin reorientation; M(o)ssbauer;

    机译:磁致伸缩;立方疏浚阶段;旋转重新定位;M(O)SSBauer;

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