Achievement of practical level critical current densities in Ba1-xKxFe2As2/Ag tapes by conventional cold mechanical deformation

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Abstract

The recently discovered iron-based superconductors are potential candidates for high-field magnet applications. However, the critical current densities (Jc) of iron-based superconducting wires remain far below the level needed for practical applications. Here, we show that the transport Jc of Ba1-xKxFe2As2/Ag tapes is significantly enhanced by the combination process of cold flat rolling and uniaxial pressing. At 4.2 K, Jc exceeds the practical level of 105 A/cm2 in magnetic fields up to 6 T. The Jc -H curve shows extremely small magnetic field dependence and maintains a high value of 8.6 × 104 A/cm2 in 10 T. These are the highest values reported so far for iron-based superconducting wires. Hardness measurements and microstructure investigations reveal that the superior Jc in our samples is due to the high core density, more textured grains, and a change in the microcrack structure. These results indicate that iron-based superconductors are very promising for high magnetic field applications.

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Gao, Z., Togano, K., Matsumoto, A., & Kumakura, H. (2014). Achievement of practical level critical current densities in Ba1-xKxFe2As2/Ag tapes by conventional cold mechanical deformation. Scientific Reports, 4. https://doi.org/10.1038/srep04065

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