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Experimental Study on Potential Heat Treatment Issues of Large Bi-2212 Coils

机译:Bi-2212大型线圈潜在热处理问题的实验研究

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摘要

The route to 30 T NMR endorsed by a recent National Academy report clearly still has many challenges to achieve high stability and homogeneous high temperature superconducting (HTS) magnet. As the only HTS conductor with round wire (RW) geometry, Bi2Sr2CaCu2O8-x (Bi-2212) RW conductor is very attractive for NMR magnet applications. At present, an NMR quality demonstration magnet with Bi-2212 RW wound insert coils is under development at the National High Magnetic Field Laboratory (NHMFL). The target of this demonstration magnet is to generate a total field of 23+ T with ppm level homogeneity. Since Bi-2212 coils require Wind-and-React (W&R) technology, our initial major concern was that large Bi-2212 coils might deform during the typical partial melt Bi-2212 heat treatment (HT) due to their large self-weight. To experimentally mimic the HT of large Bi-2212 coil, several small test coils were heat treated under deadweight loads. After 1 bar Bi-2212 full reaction, these coils were characterized in terms of coil geometry, transport critical current properties, oxygenation status and insulation performance. Coil geometry and individual wire shape was in fact not distorted, nor was transport properties degradation was induced by mechanical loading. Uniform oxygen equilibration was achieved in these coils even though they were coated with dense oxide insulation. However, although the TiO2-based insulation coating was well preserved on the wire surface, several coils developed electrical shorts.
机译:美国国家科学院(National Academy)最近的一份报告认可的30 T NMR途径显然仍然面临许多挑战,以实现高稳定性和均质的高温超导(HTS)磁体。作为唯一具有圆线(RW)几何形状的HTS导体,Bi2Sr2CaCu2O8-x(Bi-2212)RW导体对于NMR磁体应用非常有吸引力。目前,美国国家高磁场实验室(NHMFL)正在开发具有Bi-2212 RW绕线插入式线圈的NMR质量演示磁体。该演示磁铁的目标是产生具有ppm级均匀性的23+ T的总磁场。由于Bi-2212盘管需要采用风吹反应(W&R)技术,因此我们最初的主要关注点是,大型Bi-2212盘管由于其自重较大,在典型的部分熔融Bi-2212热处理(HT)期间可能会变形。为了实验模拟大型Bi-2212线圈的HT,在自重载荷下对几个小型测试线圈进行了热处理。经过1 bar Bi-2212完全反应后,根据线圈的几何形状,传输临界电流特性,氧合状态和绝缘性能对这些线圈进行了表征。实际上,线圈的几何形状和单个金属丝的形状不会变形,机械载荷也不会引起运输性能的下降。即使这些线圈涂有致密的氧化物绝缘层,也能实现均匀的氧气平衡。但是,尽管基于TiO2的绝缘涂层可以很好地保留在电线表面,但仍有一些线圈产生了电短路。

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