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Simulation of transport properties in Nb3Sn strand under bending

机译:弯曲状态下Nb3Sn钢绞线传输特性的仿真

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摘要

Superconducting performance of a large-scale Nb3Sn cable-in-conduit conductor (CICC) is degraded by periodic bending of strands subjected to a distributed transverse electromagnetic force during operation. The current transport in a single strand depends mainly on the bending strain and transverse resistivity. In particular, in the case of high-level strain and/or crack occurring among the filaments in the strain-sensitive Nb3Sn strand, these two parameters are required for better understanding of the critical current I degradation of a single strand. We use finite element method to simulate transport properties of a single Nb3Sn strand under bending. The simulation allows treating a wider range of transverse resistivity of strand, compared with our previous analytical method (Cryogenic, 58, 2013). Also, the present simulation incorporates the change of the area of strand cross section due to filament fracture into the boundary of the current transport, rather than simply imposes the condition of vanishing current on the filament fracture region as in the previous analytical method. We show the current/field profiles in the strand for various bending loads and transverse resistivities, as well as the I, degradation of several types of strands under bending. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大型Nb3Sn导管内电缆导体(CICC)的超导性能会因在运行过程中受到分布的横向电磁力的股线的周期性弯曲而降低。单股电流传输主要取决于弯曲应变和横向电阻率。特别是,在应变敏感的Nb3Sn链中的细丝之间出现高水平的应变和/或裂纹的情况下,这两个参数是更好地理解单链的临界电流I退化所必需的。我们使用有限元方法来模拟单个Nb3Sn钢绞线在弯曲下的传输特性。与我们之前的分析方法相比,该模拟方法可以处理更宽范围的钢绞线横向电阻率(Cryogenic,58,2013)。而且,本模拟将由于细丝断裂而引起的股横截面面积的变化纳入电流传输的边界,而不是像先前的分析方法那样简单地在细丝断裂区域上施加消失电流的条件。我们显示了在各种弯曲载荷和横向电阻率下,钢绞线中的电流/场分布,以及几种在弯曲状态下钢绞线的I退化。 (C)2015 Elsevier Ltd.保留所有权利。

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