首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Cooling rate effects on the microstructure, critical current density, and Tc transition of one- and two-powder BSCCO-2223 Ag-sheathed tapes
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Cooling rate effects on the microstructure, critical current density, and Tc transition of one- and two-powder BSCCO-2223 Ag-sheathed tapes

机译:冷却速率对一粉和两粉BSCCO-2223银皮胶带的微观结构,临界电流密度和Tc转变的影响

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An important variable controlling the critical current density (Jc) of Ag-sheathed BSCCO-2223 tapes is the degree of phase purity of the reacted tapes. Most correlations between Jc and microstructure show that it is highly desirable to reduce the amount of non-superconducting second phases to as low a level as practical. In recent studies of the influence of cooling rate after the final reaction, we find contradictions to this general rule. The Jc (77 K, 0 T) of so-called "one-powder" tapes can be raised by as much as 50% (from ~8000 A/cm2 to 12000 A/cm2) by slow cooling in 7.5%O2 at 0.05°C/min, even though large 2212 grains are usually seen in the slowly cooled microstructure. However, the higher Jc of the slow-cooled state does correlate with a sharper Tc transition. Experiments with "two-powder" tapes have produced similar results. These apparently anomalous results emphasize the important role played by the connectivity of the polycrystalline core in determining Jc.
机译:控制装有Ag的BSCCO-2223胶带的临界电流密度(Jc)的重要变量是反应后的胶带的相纯度。 Jc和微观结构之间的大多数相关性表明,非常希望将非超导第二相的数量减少到尽可能低的水平。在最近对最终反应后冷却速率影响的研究中,我们发现与该一般规则相矛盾。通过在7.5%的O2中缓慢冷却至0.05,可以将所谓的“单粉”胶带的Jc(77 K,0 T)提高多达50%(从〜8000 A / cm2到12000 A / cm2)。 °C / min,即使在缓慢冷却的微结构中通常可以看到大的2212晶粒。但是,缓慢冷却状态的较高Jc确实与更陡的Tc跃迁相关。用“两粉”胶带进行的实验产生了相似的结果。这些显然异常的结果强调了多晶核的连通性在确定Jc中所起的重要作用。

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