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Effect of Nanostructural Inhomogeneities on the Superconducting Characteristics of With Enhanced Grain Connectivity

Applied Superconductivity, IEEE Transactions  (2015)

Cited 9|Views28
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Abstract
MgB2-based bulk materials synthesized under 30 MPa-2 GPa pressure demonstrated an enhanced connectivity AF ~50%-98%,as compared tomostother reports (below50%), and a shielding fraction of 75%-100%. The materials inhibit high critical current densities jc, but no strict correlation was found between AF and jc. On the other side, we found correlations between jc and the distribution of nanostructural inhomogeneities such as impurity oxygen in the form of oxygen-enriched Mg-B-O nanolayers or nanoinclusions and its solution in the MgB2 matrix and as well with the amount and size of higher magnesium borides MgBx, x ≥ 4 inclusions. The distribution of boron- and oxygen-enriched (as compared to stoichiometric MgB2) inhomogeneities affects the type of pinning and, thus, jc, and to some extent, it can be regulated by synthesis temperatures and pressures and by Ti addition. Auger spectroscopy, scanning electron microscopy, and X-ray with Rietveld refinement were used for structural study.
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Key words
auger electron spectra,critical current density (superconductivity),flux pinning,impurities,inclusions,magnesium compounds,nanostructured materials,scanning electron microscopy,type ii superconductors,auger spectroscopy,fcl,mgb2,rietveld refinement,boron-enriched inhomogeneity,bulk materials,enhanced grain connectivity,fault current limiter,high critical current density,high magnesium borides,nanoinclusions,nanolayers,nanostructural inhomogeneity effect,oxygen impurity,oxygen-enriched inhomogeneity,pressure 30 mpa to 2 gpa,shielding fraction,superconducting characteristics,synthesis temperatures,critical current density,electric machines,fault current limiters,fault current limiter (fcl),magnesium
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