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Low resistance splices for HTS devices and applications

机译:HTS设备和应用的低电阻接头

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This paper discusses the preparation methodology and performance evaluation of low resistance splices made of the second generation (2G) high-temperature superconductor (HTS). These splices are required in a broad spectrum of HTS devices including a large aperture, high-field solenoid built in the laboratory to demonstrate a superconducting magnetic energy storage (SMES) device. Several pancake coils are assembled in the form of a nested solenoid, and each coil requires a hundred meters or more of 2G (RE)BCO tape. However, commercial availability of this superconductor with a very uniform physical properties is currently limited to shorter piece lengths. This necessitates us having splices to interconnect the tape pieces within a pancake coil, between adjacent pancake coils, and to attach HTS current leads to the magnet assembly. As a part of the optimization and qualification of splicing process, a systematic study was undertaken to analyze the electrical performance of splices in two different configurations suitable for this magnet assembly: lap joint and spiral joint. The electrical performance is quantified in terms of the resistance of splices estimated from the current-voltage characteristics. It has been demonstrated that a careful application of this splicing technique can generate lap joints with resistance less than 1 nn at 77 K. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了由第二代(2G)高温超导体(HTS)制成的低电阻接头的制备方法和性能评价。这些接头是在广谱的HTS设备中,包括大孔径,内置在实验室中的高场螺线管,以证明超导磁能存储(SMES)装置。几个煎饼线圈以嵌套螺线管的形式组装,每个线圈需要百米或更多的2g(RE)BCO胶带。然而,该超导体的商业可用性具有非常统一的物理性质目前限制为较短的件长度。这需要我们具有将胶带件在煎饼线圈内互连的接头,并且在相邻的煎饼线圈之间连接,并且将HTS电流连接到磁体组件。作为剪接过程的优化和鉴定的一部分,进行了系统研究,分析了适用于该磁铁组件的两种不同配置中接头的电性能:搭接和螺旋接头。就从电流 - 电压特性估计的接头电阻而定量电气性能。已经证明,仔细应用该拼接技术可以在77K(c)2017年Elsevier有限公司保留所有权利,产生具有小于1 NN的膝盖接头。

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