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A simple and effective approach for thermo-mechanical modelling of composite superconducting wires

机译:一种简单有效的复合超导线热力学建模方法

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The ability to compute accurately the strain field in Nb3Sn filaments is a crucial point in cable design, due to the significant strain sensitivity of niobium-tin wires. Due to its heterogeneity, a straightforward numerical simulation of a cable, taking into account all the details of the microstructure, would result in an enormous number of unknowns. As an alternative, multiscale approaches can be used to deal with this kind of problem, to understand the behaviour across the various scales. In this framework, a simple and efficient approach to obtain the homogenized properties of a heterogeneous strand is proposed here. This approach is developed for the non-linear, thermo-mechanical field. It consists of the solutions to some boundary value problems formulated on a suitably chosen statistically representative volume element of the wire. Two bronze-route strands and one internal-tin strand are considered and the equivalent parameters are obtained. Finally, the cool down and the subsequent application of a tensile axial load are simulated taking into account the homogenized wires. Computed results are shown to be in excellent agreement with measured stress-strain curves.
机译:准确计算Nb3Sn细丝中的应变场的能力是电缆设计中的关键点,因为铌-锡线具有显着的应变敏感性。由于电缆的异质性,考虑到微结构的所有细节,对电缆进行简单的数值模拟将导致大量的未知数。作为替代方案,可以使用多尺度方法来处理此类问题,以了解各种尺度下的行为。在此框架下,这里提出了一种简单有效的方法来获得异质链的均质特性。这种方法是为非线性热机械领域开发的。它由针对某些边界值问题的解决方案组成,这些问题是在适当选择的具有统计意义的导线体积元素上制定的。考虑了两条青铜路径股线和一条内部锡股线,并获得了等效参数。最后,考虑到均质钢丝,模拟了冷却过程以及随后施加的轴向拉伸载荷。计算结果与测得的应力-应变曲线非常吻合。

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