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Contact mechanical characteristics of Nb _3Sn strands under transverse electromagnetic loads in the CICC cross-section

机译:CICC横截面中横向电磁载荷下Nb_3Sn钢绞线的接触力学特性

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摘要

This paper presents a new code for the two-dimensional discrete element method (DEM) and relevant simulations to quantitatively characterize the contact force behavior of the Nb _3Sn strands in the ITER CICC cross-section under a transverse electromagnetic load. In order to obtain the essential parameters in the contact force model employed in the DEM, a simulation of the experiments conducted by Nijhuis etal (2004 IEEE Trans. Appl. Supercond. 14 1489-94) is first performed, where the load-displacement curve predicted by the code is in good agreement with the measurements. After that, the contact force chain between strands and its distribution is quantitatively analyzed by the code. It is found that the contact force distribution among strands is heterogeneous and strongly anisotropic. In other words, the force chain distribution, which determines the behavior of the assembly of strands with discrete media, and the distribution of area average magnitude of the contact force are obviously inhomogeneous. To describe this inhomogeneity, here, the probability density function (PDF) is used in the statistical analysis. The numerical results show that the PDFs of the magnitudes of the resultant contact force, normal contact force, and tangential contact force all decay with an exponential law, and that PDFs of the directions of the contact forces are all anisotropic and exhibit about six periodic changes in which the peak values in the direction parallel to the applied electromagnetic load are appreciably larger than the other peaks.
机译:本文提出了二维离散元方法(DEM)的新代码和相关模拟,以定量表征ITER CICC横截面中Nb _3Sn钢绞线在横向电磁载荷下的接触力行为。为了获得DEM中使用的接触力模型中的基本参数,首先对Nijhuis等人(2004 IEEE Trans。Appl。Supercond。14 1489-94)进行的实验进行模拟,其中载荷-位移曲线代码预测的结果与测量结果非常吻合。之后,通过代码对钢绞线之间的接触力链及其分布进行定量分析。发现线之间的接触力分布是不均匀的并且是各向异性的。换句话说,决定分散介质束的行为的力链分布和接触力的面积平均大小分布显然是不均匀的。为了描述这种不均匀性,此处在统计分析中使用了概率密度函数(PDF)。数值结果表明,合力,法向接触力和切向接触力的大小的PDF均以指数律衰减,并且接触力方向的PDF均为各向异性,并表现出大约六个周期变化其中平行于所施加的电磁负载的方向上的峰值明显大于其他峰值。

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