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Effect of Tensile Stress on Characteristics of High-Temperature Superconducting Tape

机译:拉伸应力对高温超导带材性能的影响

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With the discovery of high-temperature superconducting (HTS) tape and the improvement of the performance of the second-generation HTS tape, the application of superconductors in power system is gradually unfolding. There have been many demonstration projects at home and abroad. When the HTS tape is applied to the power cable, the mechanical external action of the cable winding, laying and installation operations, and the Ampere force when the current is applied are applied to it. Stress has an important influence on the critical current characteristic of the superconducting tape. In different application scenarios of the tape, different materials and thicknesses reinforcement layers can be chosen. In this paper, for the YBCO superconducting tapes with different reinforcement layers, a set of systems with critical current under tensile stress at cryogenic temperature is used to study the influence of tensile stress on the critical current of superconducting tape at low temperature. We analyze the influence of the structure of the superconducting tape on the characteristics of the tape and studied its degradation characteristics, which have guiding significance for the design and operation of the superconducting cable.
机译:随着高温超导带材的发现和第二代高温超导带材性能的提高,超导体在电力系统中的应用逐渐展开。在国内外已经有许多示范项目。当高温超导带应用于电力电缆时,电缆绕组、敷设和安装操作的机械外部作用,以及施加电流时的安培力都会被施加到电缆上。应力对超导带的临界电流特性有重要影响。在胶带的不同应用场景中,可以选择不同的材料和厚度的增强层。本文针对不同增强层的YBCO超导带材,采用一组在低温拉伸应力下具有临界电流的系统,研究了低温拉伸应力对超导带材临界电流的影响。分析了超导带结构对超导带性能的影响,研究了超导带的退化特性,对超导电缆的设计和运行具有指导意义。

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