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Comparison of Y<sub>2</sub>Ba<sub>4</sub>CuBiOy Nanoparticles with CeO<sub>2</sub>Doping on the Levitation Force of Single Domain YBCO Bulk Superconductor by TSIG Process

Comparison of Y<sub>2</sub>Ba<sub>4</sub>CuBiOy Nanoparticles with CeO<sub>2</sub>Doping on the Levitation Force of Single Domain YBCO Bulk Superconductor by TSIG Process
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摘要 The top-seeded infiltration and growth process (TSIG) is very effective method for the preparation of YBa2Cu3O7-x (YBCO) bulk superconductors. In order to improve the levitation force of the samples, a series of single domain YBCO bulk superconductors with different ratios of nanoscale Y2Ba4CuBiOy (YBi2411) inclusions in the solid phase pellet is successfully fabricated by the TSIG technique on the basis of previous research. In the present work, the results of YBCO bulk superconductors with YBi2411 and CeO2 (1 wt%) codoping system indicate that, the optimum doping of YBi2411 is 2 wt%, the size of Y211 particles is reduced compared with the samples without CeO2 doping;the largest levitation force is about 15 N obtained in the samples with optimum YBi2411, which is about two times higher than that of the sample without CeO2 doping. The results are very helpful for the fabrication of high quality single domain YBCO bulk superconductors. The top-seeded infiltration and growth process (TSIG) is very effective method for the preparation of YBa2Cu3O7-x (YBCO) bulk superconductors. In order to improve the levitation force of the samples, a series of single domain YBCO bulk superconductors with different ratios of nanoscale Y2Ba4CuBiOy (YBi2411) inclusions in the solid phase pellet is successfully fabricated by the TSIG technique on the basis of previous research. In the present work, the results of YBCO bulk superconductors with YBi2411 and CeO2 (1 wt%) codoping system indicate that, the optimum doping of YBi2411 is 2 wt%, the size of Y211 particles is reduced compared with the samples without CeO2 doping;the largest levitation force is about 15 N obtained in the samples with optimum YBi2411, which is about two times higher than that of the sample without CeO2 doping. The results are very helpful for the fabrication of high quality single domain YBCO bulk superconductors.
出处 《Journal of Materials Science and Chemical Engineering》 2018年第1期90-98,共9页 材料科学与化学工程(英文)
关键词 NANOPARTICLES YBCO Bulk SUPERCONDUCTOR TSIG PROCESS Nanoparticles YBCO Bulk Superconductor TSIG Process
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