Effect of liquid phase mass for the production of single grain infiltration growth processed bulk YBa2Cu3Oy by YbBa2Cu3Oy+Liquid phase as a liquid source

被引:3
|
作者
Sushma, Miryala [1 ,2 ]
机构
[1] Shibaura Inst Technol, Dept Mat Sci & Engn, Superconducting Mat Lab, Koto Ku, 3-7-5 Toyosu, Tokyo 1358546, Japan
[2] Seisen Int Sch, Setagaya Ku, Chome 12-15 Yoga, Tokyo 1580097, Japan
关键词
Y-123; IG process; Yb-123+liquid (1:1.3); Critical current density; Trapped field; SUPERCONDUCTORS; FABRICATION; CEO2;
D O I
10.1016/j.matchemphys.2019.122477
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The efficient production of single grain YBa2Cu3O7-delta (Y-123) bulks via top-seeded infiltration growth (IG) process demands optimized liquid phase (in the given case a mixture of Y-123 and Ba3Cu5O8). This enables a smooth peritectic growth and results in high quality bulks. Recently, 1:1 mixture of Y-123 and Ba3Cu5O8 has been considered as an optimum. In the search for a further optimized mixture to attain a longer c-axis growth, we tested Yb-123 + Ba3Cu5O8 liquid mixture varying the liquid phase (LP) amount, i.e. Yb-123 + liquid (1:1; 1:1.2; and 1:1.3). Using these liquid phase concentrations, Y-123 blocks were isothermally grown at 995 degrees C for 50 h with following slow cooling. Single-grain Y-123 blocks of 20 mm diameter and 7 mm thickness were fabricated. We present detail properties of the bulk Y-123 prepared with the liquid source of Yb-123 +Ba3Cu5O8 (1:1.3). A sharp superconducting transition with T-c,(onset) at 90 K and critical current density (J(r)) at 77 K of around 40 kA/cm(2) and 13 kA/cm(2) in self-field and 2 T (H//c-axis), respectively, were observed. Trapped field showed a typical single cone profile with maximum value of 0.4 Tat 77 K, 0.3 mm above top centre of the bulk Y-123. It is more than triple value for the same size and a similar material reported so far for bulk Y-123 prepared with Yb-123 + Ba3Cu5O8 (1:1) as a liquid source.
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页数:8
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