• DocumentCode
    1009910
  • Title

    Further investigations of the solid-liquid reaction and high-field critical current density in liquid-infiltrated Nb-Sn superconductors

  • Author

    Hong, M. ; Maher, D.M. ; Ellington, M.B. ; Hellman, F. ; Geballe, T.H. ; Ekin, J.W. ; Holthuis, J.T.

  • Author_Institution
    AT&T Bell Laboratories, Murray Hill, NJ
  • Volume
    21
  • Issue
    2
  • fYear
    1985
  • fDate
    3/1/1985 12:00:00 AM
  • Firstpage
    771
  • Lastpage
    774
  • Abstract
    Superior superconducting properties, such as high Jc\´s and Tc\´s, have been obtained from reacted liquid-infiltrated Nb-Sn composite wires. These excellent properties are attributed to the chemistry and structure of the material, which is prepared by a unique solid (Nb) - liquid (Sn) reaction. From heat capacity measurements, sharp bulk superconducting transitions of the Al5 phase occur at 17.2-18 K and the weight fraction of Al5 in the composite wire is ~23%. Analytical electron microscopy techniques have shown that: the microstructure of these conductors consists of alternating large-grain and small-grain filaments; these two types of filaments correspond to BCC Nb(Sn) and cubic Al5 Nb_{75\\pm{x}}Sn_{25\\mp{x}} phases, respectively; the Al5 filaments ( \\leq0.5 \\mu m) are chemically homogeneous in terms of measured X-ray intensity ratios to within ±7%, which implies that x\\sim1.5 ; and the Al5 grains are essentially free of extended lattice disorder down to a resolution of ∼0.34nm. Recent work in which Nb is alloyed with Ta has shown that these superconducting properties can be improved upon; e.g. high overall Jc\´s of \\sim1.8 \\times 10^{4} A/cm2at 20 T and 4.2 K have been measured. Also, the liquid-infiltrated Nb(Ta)-Sn composites have a damage strain tolerance nearly double that of commercial bronze-processed Nb-Sn conductors.
  • Keywords
    Superconducting cables; Chemical analysis; Chemistry; Conductors; Critical current density; Niobium; Phase measurement; Superconducting filaments and wires; Superconducting materials; Superconductivity; Tin;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.1985.1063788
  • Filename
    1063788