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Properties of internally stranded RBB (ring bundle barrier) low ACloss BSCCO tapes made by PITAR route

机译:PITAR路线制造的内部绞合RBB(环束屏障)低ACloss BSCCO胶带的性能

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The novel RBB-BSCCO tape design resembling a Rutherford cable structure for low AC losses was improved with respect to the conductor geometry and the superconducting properties in combination with a low level of AC losses. The PITAR route (powder in tube assemble and react) allows economical preparation of a stranded conductor composite with techniques similar to standard BSCCO tapes. The advantage is a very effective twist application to the strands and low geometrical distortions to the filament cross sections. Data of the transport current anisotropy and current homogeneity (by MOI) for differently twisted conductors are presented. Transport currents up to 9 kAcm-2 were achieved. Filament twist pitches down to 3.4 mm were realized and the achieved effective decoupling of the strands shifts the maximum of the AC losses in perpendicular external AC fields to frequency values above 500 Hz. This was the first time realization for a BSCCO conductor
机译:类似于卢瑟福电缆结构的新颖RBB-BSCCO胶带设计具有低AC损耗,相对于导体几何形状和超导特性,同时还具有低水平的AC损耗,它得到了改进。 PITAR路线(粉末在管中组装和反应)允许使用类似于标准BSCCO胶带的技术经济地制备绞合导体复合材料。优点是对绞线施加了非常有效的加捻,对长丝横截面的几何变形很小。给出了不同绞合导体的传输电流各向异性和电流均匀性的数据(通过MOI)。实现了高达9 kAcm-2的传输电流。实现了低至3.4 mm的细丝扭曲节距,并且所实现的股线有效去耦将垂直外部交流场中的交流损耗最大值转移到500 Hz以上的频率值。这是BSCCO指挥首次实现

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