Microstructure and pinning in high-Tc and large-Jc (Nd, Eu, Gd)-123 superconductors prepared by OCMG process

被引:117
作者
Muralidhar, M
Koblischka, MR
Saitoh, T
Murakami, M
机构
[1] ISTEC, SRL, Superconducting Res Lab, Minato Ku, Tokyo 105, Japan
[2] Iwate Ind Res Inst, Morioka, Iwate 020, Japan
关键词
D O I
10.1088/0953-2048/11/12/001
中图分类号
O59 [应用物理学];
学科分类号
摘要
The effects of (Nd, Eu, Gd)(2)BaCuO5 (NEG-211), Pt and CeO2 additions on OCMG-processed (Nd, Eu, Gd)Ba2Cu3O ('NEG') composites have been investigated in detail using a combination of scanning electron microscopy and measurements of critical current densities, J(c). Microstructural observations clearly indicated that the platinum addition was effective in refining the NEG-211 secondary-phase particles, which led to a dramatic increase in J(c) in the low-field as well as in the high-field region. TEM-EDX analyses revealed that the small secondary-phase particles (diameter approximate to 0.1 mu m) consist mainly of Gd in the rare earth site, while the large particles contain Nd, Eu and Gd in the rare earth site with an even ratio, which is identical to the nominal composition of the precursor powder. For an NEG sample with 40 mol% NEG-211 additions, a large critical current density of 60 000 A cm(-2) at 77 K was observed in a magnetic field of 3 T applied parallel to the c-axis of the sample. The critical current density measurements showed that the zero field and peak J(c) values are similar in samples with 30 and 40 mol% of NEG-211 added. In contrast to this, the combination of CeO2 and Pt addition was not as effective in refining the NEG-211 particles, and also the J(c) values were found to decrease in the entire field region.
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页码:1349 / 1358
页数:10
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