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Contact resistance between two REBCO tapes under load and load cycles

机译:在负载和负载周期下的两个rebco带之间的接触电阻

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摘要

No-insulation (NI) REBCO magnets have many advantages. They are self-protecting, and therefore do not need quench detection and protection, which can be very challenging to implement in a high T-c superconducting magnet. Moreover, by removing the insulation and allowing thinner copper stabilizers, NI REBCO magnets have significantly higher engineering current density and higher mechanical strength. On the other hand, NI REBCO magnets have the drawbacks of long magnet charging time and high field ramp loss. In principle, these drawbacks can be mitigated by managing the turn-to-turn contact resistivity (R-c). Evidently, the first step toward managing R-c is to establish a reliable method of accurate R-c measurement. In this paper, we present experimental R-c measurements for REBCO tapes as a function of mechanical load up to 144 MPa and load cycles up to 14. We find that R-c is in the range of 26-100 mu Omega center dot cm(2), and that it decreases with increasing pressure, and gradually increases with the number of load cycles. The results are discussed in the framework of Holm's electric contact theory.
机译:无绝缘(NI)REBCO磁铁具有许多优点。它们是自我保护的,因此不需要淬火检测和保护,这在高T-C超导磁体中可以非常具有挑战性。此外,通过去除绝缘并允许较薄的铜稳定剂,Ni Rebco磁铁具有明显更高的工程电流密度和更高的机械强度。另一方面,Ni Rebco磁铁具有长磁体充电时间和高场斜坡损失的缺点。原则上,可以通过管理转弯接触电阻率(R-C)来缓解这些缺点。显然,管理R-C的第一步是建立一种可靠的R-C测量方法。在本文中,我们为REBCO胶带提供了实验RC测量,作为机械负载的函数,高达144MPa,最高可达14的负载循环。我们发现RC在26-100 mmomega中心点CM(2)的范围内,它随着压力的增加而减小,并且随着负载循环的数量逐渐增加。结果在Holm电接触理论的框架中讨论过。

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