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Numerical Simulations of Superconducting Cables Bending and Winding

机译:超导电缆弯曲和缠绕的数值模拟

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摘要

The assessment of the cold working, deformation, stress and strain distributions, and elastic spring back of superconducting cables conductors used for nuclear fusion experiments is a crucial issue for their manufacture process. The winding process of the ITER Toroidal Field (TF) conductors foresees their unbending from the drum they are delivered with and re-bending to their final shape. Nowadays the winding of the European Dipole (EDIPO) dummy coil is in progress and the final one will be challenging due to the conductors stiffness and the related spring back effect. In the light of this F4E ongoing activity and in view of the final design of the automatic winding process of the ITER TF coils a numerical tool capable to predict the plastic and elastic behavior of these conductors would be useful. To this end explicit Finite Element (FE) models have been implemented with the commercial code ANSYS/LS DYNA and simplified non linear calculations with CAST3M. Several numerical analyses have been performed by using different material properties, plasticity behaviors and loading conditions. The results of the analyses are presented and compared with experimental results and correlations with analytical solutions are investigated.
机译:用于核聚变实验的超导电缆导体的冷加工,变形,应力和应变分布以及弹性回弹的评估是其制造过程的关键问题。 ITER环形磁场(TF)导体的绕制过程预见了它们从与它们一起交付的卷筒上未弯曲的状态,然后重新弯曲成其最终形状。如今,欧洲偶极子(EDIPO)虚拟线圈的绕制正在进行中,由于导体的刚度和相关的回弹效应,最后一个极线圈将具有挑战性。鉴于正在进行的F4E活动,并且鉴于ITER TF线圈自动绕线过程的最终设计,一种能够预测这些导体的塑性和弹性行为的数值工具将非常有用。为此,已经使用商业代码ANSYS / LS DYNA实现了显式有限元(FE)模型,并使用CAST3M简化了非线性计算。通过使用不同的材料特性,可塑性行为和加载条件,已进行了一些数值分析。介绍了分析结果,并与实验结果进行了比较,并研究了与分析解决方案的相关性。

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