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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Progress in superconducting performance of rolled multifilamentaryBi-2223 HTS composite conductors
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Progress in superconducting performance of rolled multifilamentaryBi-2223 HTS composite conductors

机译:轧制复丝Bi-2223 HTS复合导体的超导性能研究进展

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摘要

Significant enhancements in critical current densities in rolled multifilamentary Bi-2223 HTS composite conductors have been achieved using the powder-in-tube (PIT) technique. At 77 K and self field, oxide critical current densities (Jc) of 55 kA/cm2, overall or engineering critical current densities (Je) of 15 kA/cm2, and critical currents (Ic) of 125 A have been achieved in different rolled multifilamentary composites. Progress in achieving such high electrical performance is believed to stem in part from an improvement of grain connectivity by reducing weak links. The Jc dependence on magnetic field (B) and the degree of c-axis texture of these high quality conductors have been investigated at various temperatures. Our results also demonstrate that the critical current retention in magnetic field can be independently controlled from the self field critical current density, suggesting that flux pinning improvements and weak link reductions can be separately engineered into Bi-2223 composites fabricated using manufacturable processes
机译:使用管中粉末(PIT)技术已实现了轧制复丝Bi-2223 HTS复合导体临界电流密度的显着提高。在77 K和自电场下,在不同轧制条件下,氧化物临界电流密度(Jc)为55 kA / cm2,整体或工程临界电流密度(Je)为15 kA / cm2,临界电流(Ic)为125 A多丝复合材料。据信实现如此高的电性能的进展部分源于通过减少薄弱环节而改善了晶粒的连通性。已经在各种温度下研究了这些高质量导体对磁场(B)的Jc依赖性以及c轴织构的程度。我们的结果还表明,可以从自电场临界电流密度中独立控制磁场中的临界电流保持率,这表明可以将可磁通钉扎改进和弱链接减少分别设计到使用可制造工艺制造的Bi-2223复合材料中

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