首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Bending-Peeling Method to Research the Effect of Lateral Stress on Superconductivity of REBCO Tape at Liquid-Nitrogen Temperature
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Bending-Peeling Method to Research the Effect of Lateral Stress on Superconductivity of REBCO Tape at Liquid-Nitrogen Temperature

机译:弯曲剥离法研究液氮温度下横向应力对REBCO带超导性的影响

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Rare earth barium copper oxide (REBCO) type materials are widely used in second-generation high-temperature superconductor tapes to carry high current volumes. These tapes can provide high critical currents along with good tolerance to perpendicular magnetic fields. However, REBCO tapes generally use a laminate structure that suffers from low peeling strength among its inner interfaces. Previously, we proposed a bending-peeling (BP) method and applied it to measurement of the interfacial strength of REBCO tapes at room temperature. All samples failed at the REBCO layer at room temperature. In this paper, we used the BP method to perform low-temperature interfacial strength measurements at liquid-nitrogen temperatures. There are two types of failure, where one involves peeling of the REBCO layer and the other involves peeling at the interface between the tape and the epoxy resin. The errors in the BP method were discussed in detail. The superconducting current was monitored during the BP experiment and showed that the effect of out-of-plane tensile stress on the superconducting current was not significant before the breaking of the tape. The degradation in the superconductivity is mainly caused by the structural failure of the REBCO layer.
机译:稀土钡氧化铜(REBCO)型材料广泛用于第二代高温超导带中,以承载大电流。这些胶带可提供高临界电流,并对垂直磁场具有良好的耐受性。然而,REBCO带通常使用其内部界面之间的剥离强度低的层压结构。以前,我们提出了一种弯曲剥离(BP)方法,并将其应用于室温下REBCO胶带的界面强度测量。在室温下,所有样品在REBCO层均不合格。在本文中,我们使用BP方法在液氮温度下进行低温界面强度测量。有两种类型的故障,一种涉及剥离REBCO层,另一种涉及在胶带和环氧树脂之间的界面处剥离。详细讨论了BP方法中的错误。在BP实验期间对超导电流进行了监测,结果表明,在胶带断裂之前,面外拉伸应力对超导电流的影响并不明显。超导性的下降主要是由REBCO层的结构破坏引起的。

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