Title :
Microstructure and Superconducting Properties of Single Grains of Y-Ba-Cu-O Containing Y-2411(M) and
Author :
Shi, Y. ; Dennis, A.R. ; Cardwell, D.A.
Author_Institution :
Eng. Dept., Univ. of Cambridge, Cambridge, UK
fDate :
6/1/2011 12:00:00 AM
Abstract :
Y-Ba-Cu-O (YBCO) single grains have the potential to generate large trapped magnetic fields for engineering applications, and research on the processing and properties of this material has attracted interest world-wide over the past 20 years. In particular, the introduction of flux pinning centers to the large grain microstructure to improve its current density Jc, and hence trapped field, has been investigated extensively. Y2Ba4CuMOx [Y-2411(M)], where M=Nb , Ta, Mo, W, Ru, Zr, Bi and Ag, has been discovered recently to form very effective flux pinning centers due primarily to its ability to form nano-size inclusions in the superconducting phase matrix. However, the addition of the Y-2411(M) phase to the precursor composition complicates the melt-processing of single grains. The addition of Y2O3 to the precursor composition, however, broadens the growth window of single YBCO grains containing Y-2411 (M). We report an investigation of the microstructures and superconducting properties of single grains of this composition grown by top seeded melt growth (TSMG).
Keywords :
barium compounds; crystal growth from melt; crystal microstructure; current density; flux pinning; high-temperature superconductors; inclusions; yttrium compounds; Y-2411phase; Y-Ba-Cu-O single grains; Y2Ba4CuAgOx; Y2Ba4CuBiOx; Y2Ba4CuMoOx; Y2Ba4CuNbOx; Y2Ba4CuRuOx; Y2Ba4CuTaOx; Y2Ba4CuWOx; Y2Ba4CuZrOx; current density; engineering applications; flux pinning centers; grain microstructure; growth window; melt-processing; nanosize inclusions; precursor composition; superconducting phase matrix; superconducting properties; top seeded melt growth; trapped magnetic fields; yttria addition; Microscopy; Microstructure; Optical device fabrication; Optical microscopy; Powders; Superconducting magnets; Yttrium barium copper oxide; ${rm Y}_{2}{rm O}_{3}$; Microstructure; Y2411(M); pinning; superconductivity;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2010.2089667