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Feasibility Study of the Impregnation of a No-Insulation HTS Coil Using Solder

机译:用焊料浸渍无绝缘高温超导线圈的可行性研究

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This paper reports the feasibility of the impregnation of no-insulation (NI) high-temperature superconducting (HTS) coils using solder. NI coils are widely studied and used in many situations. To utilize an HTS coil under high mechanical loads such as field coils for rotating machines, the HTS tapes must be stabilized mechanically. Epoxy impregnation is a common method to protect the HTS field from mechanical disturbances caused by the magnetic field and rotational vibration of the rotor to enhance the mechanical stability. However, traditional epoxy resins are electrical insulating materials which might cause the turn-to-turn contact resistance of NI coils to increase. Therefore, we proposed a new kind of impregnation method using the electrically conductive material, solder. Two coils were fabricated and tested for comparison. One is the NI coil without impregnation and the other is the NI coil impregnated with solder. The charge-discharge and sudden-discharge tests were performed in liquid nitrogen at 77 K. The experimental results were studied with equivalent circuit analyses. The results of this paper could provide useful data for the application of solder impregnated NI HTS coils.
机译:本文报告了使用焊料浸渍非绝缘(NI)高温超导(HTS)线圈的可行性。 NI线圈已被广泛研究并用于许多情况。为了在高机械负载下使用HTS线圈(例如旋转机器的励磁线圈),必须在机械上稳定HTS磁带。环氧浸渍是保护高温超导磁场免受转子磁场和转子旋转振动引起的机械干扰的常用方法,以增强机械稳定性。但是,传统的环氧树脂是电绝缘材料,可能会导致NI线圈的匝间接触电阻增加。因此,我们提出了一种使用导电材料焊料的新型浸渍方法。制作了两个线圈,并进行了测试以进行比较。一个是不浸渍的NI线圈,另一个是用焊料浸渍的NI线圈。在液氮下于77 K下进行充放电和突然放电测试。通过等效电路分析研究了实验结果。本文的研究结果可为浸渍焊料的NI HTS线圈的应用提供有用的数据。

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