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Nb$_{3}$Sn Wire Layout Optimization to Reduce Cabling Degradation

机译:Nb $ _ {3} $ Sn布线布局优化以减少布线质量下降

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摘要

The next European dipole (NED) activity is aimed at the development of a large-aperture, high-field superconducting magnet relying on high-performances conductors. Part of the NED program is devoted to the mechanical study of a new generation of wires and to predict and describe their behavior under the severe loading conditions of the cabling process. A Finite Element modelization of wires was developed, allowing the wire behavior under simple uni-axial loads to be described. In this paper, the mechanical performances of different strand configurations are compared. The external diameter of the wire being fixed, several parameters are taken into account: the total number of sub-elements, the composition of the sub-elements, the local copper-to-non-copper ratio, the number of copper cells in the central region. The aim is to isolate the influence of each parameter on the wire deformations, trying to find an optimum design minimizing cabling damages.
机译:下一个欧洲偶极(NED)活动旨在开发依赖高性能导体的大孔径,高场超导磁体。 NED计划的一部分致力于新一代电线的机械研究,并预测和描述其在布线过程中的苛刻负载条件下的行为。开发了导线的有限元建模,可以描述简单单轴载荷下的导线行为。在本文中,比较了不同钢绞线配置的机械性能。导线的外径是固定的,要考虑以下几个参数:子元素的总数,子元素的组成,局部铜与非铜的比率,铜中的铜单元数中央区域。目的是隔离每个参数对电线变形的影响,试图找到使电缆损坏最小的最佳设计。

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