Microstructure-critical current density model for MgB2 wires and tapes

被引:31
|
作者
Birajdar, B. [1 ]
Eibl, O. [1 ]
机构
[1] Univ Tubingen, Inst Appl Phys, D-72076 Tubingen, Germany
关键词
annealing; coherence length; critical current density (superconductivity); electron probe analysis; flux pinning; grain size; magnesium compounds; materials preparation; porous materials; powders; scanning electron microscopy; superconducting tapes; transmission electron microscopy; UPPER CRITICAL FIELDS; BULK;
D O I
10.1063/1.3068361
中图分类号
O59 [应用物理学];
学科分类号
摘要
MgB2 wires and tapes were prepared by the powder in tube method using different processing technologies and thoroughly characterized for their superconducting properties. Either prereacted MgB2 (ex situ) or a mixture of Mg+2B (in situ) was used as the precursor powder. In some wires the precursor powder was mixed with SiC. The critical current density (J(c)) of these wires was found to differ by orders of magnitude, the highest J(c) being 10(4) A cm(-2) at 10.5 T and 4.2 K. The microstructure of these wires was investigated using quantitative electron microscopy and spectroscopy methods [B. Birajdar, N. Peranio, and O. Eibl, Supercond. Sci. Technol. 21, 073001 (2008)]: combined scanning electron microscopy, electron probe microanalysis, and transmission electron microscopy analysis with artifact-free sample preparation, elemental mapping, and advanced chemical quantification. Wires with prereacted MgB2 (ex situ) show oxygen-poor MgB2 colonies (a colony is a dense arrangement of several MgB2 grains) embedded in a porous oxygen-rich matrix introducing structural granularity. Wires with elemental precursors (in situ) are generally more dense but show inhibited MgB2 phase formation with significantly higher fraction of B-rich secondary phases in comparison to the ex situ wires. SiC in the in situ wires results in the formation of Mg2Si secondary phases. In situ and mechanically alloyed samples show smaller (20-100 nm) MgB2 grains, the grain size being slightly larger than the coherence length. All samples show Mg oxide. SiC added samples annealed beyond 950 degrees C yield formation of Si oxide compounds, whereas Mg2Si is found for annealing temperatures of less than 650 degrees C. The critical current is limited due to the anisotropy but also due to structural granularity. A microstructure-critical current density model is given to explain the large, orders of magnitude, differences in the J(c) of MgB2 wires and tapes. The model contains the following microstructure parameters: (1) MgB2 grain size, (2) colony size, (3) volume fraction of B-rich secondary phases, and (4) oxygen mole fraction. The logarithmic critical current densities as a function of magnetic field were parametrized and the decay field and the critical current density at zero field (J(c0)) was quantitatively correlated with the parameters of the microstructure. The MgB2 grain size is negatively correlated with the decay field and the three other microstructure parameters show correlation with J(c0). Sample preparation influencing the microstructure parameters is discussed. A detailed analysis is given to correlate the microstructural data with respect to fundamental parameters of a flux-line pinning model established for anisotropic superconductors.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Effect of grain refinement on enhancing critical current density and upper critical field in undoped MgB2 ex situ tapes
    Malagoli, A.
    Braccini, V.
    Tropeano, M.
    Vignolo, M.
    Bernini, C.
    Fanciulli, C.
    Romano, G.
    Putti, M.
    Ferdeghini, C.
    Mossang, E.
    Polyanskii, A.
    Larbalestier, D. C.
    JOURNAL OF APPLIED PHYSICS, 2008, 104 (10)
  • [2] Correlation of superconducting properties and microstructure of MgB2 wires and tapes
    Birajdar, B.
    Eibl, O.
    Braccini, V.
    Grasso, G.
    Pachla, W.
    Herrman, M.
    Haessler, W.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2007, 460 (1409-1410): : 1409 - 1410
  • [3] Superconducting Properties and Microstructure in MgB2 Bulks, Wires and Tapes
    冯勇
    阎果
    赵勇
    吴晓京
    周廉
    张平祥
    TsinghuaScienceandTechnology, 2003, (03) : 316 - 333
  • [4] Improved flux pinning and high critical current density in Fe-sheathed MgB2 wires and tapes by carbon nanotube doping
    Xu, Aixia
    Ma, Yanwei
    Wang, Dongliang
    Gao, Zhaoshun
    Zhang, Xianping
    Watanabe, K.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2007, 466 (1-2): : 190 - 195
  • [5] Enhanced Critical Current Density in Bulk MgB2
    Muralidhar, Miryala
    Higuchi, Masaki
    Kitamoto, Kotaro
    Koblischka, Michael R.
    Jirsa, Milos
    Murakami, Masato
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2018, 28 (04)
  • [6] Effect of nano-C doping on the critical current density and flux pinning of MgB2 tapes
    Zhang, Xianping
    Ma, Yanwei
    Gao, Zhaoshun
    Wang, Dongliang
    Awaji, Satoshi
    Nishijima, Gen
    Watanabe, Kazuo
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2007, 17 (02) : 2915 - 2918
  • [7] Stoichiometry dependence of the critical current density in pure and nano-SiC doped MgB2/Fe tapes
    Jiang, C. H.
    Kumakura, H.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2007, 451 (01): : 71 - 76
  • [8] Development of powder-in-tube processed MgB2 tapes and wires
    Kumakura, H
    Matsumoto, A
    Fujii, H
    Togano, K
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2002, 66 (04) : 214 - 222
  • [9] Influences of Microstructure on Critical Current Properties in MgB2/Al Film
    Shimada, Yusuke
    Kubota, Yuuki
    Hata, Satoshi
    Ikeda, Ken-ichi
    Nakashima, Hideharu
    Doi, Toshiya
    Fujiyoshi, Takanori
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2013, 23 (03)
  • [10] Resent Progress on MgB2 Wires
    Kumakura, Hiroaki
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2025, 35 (05)