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The FBI Facility-a test rig for critical current measurements on CICC as a function of strain

机译:FBI设施-一种用于在CICC上进行关键电流测量(作为应变函数)的测试装置

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One of the most important characteristics of Nb/sub 3/Sn strands is the strain dependence of the critical current density which has to be taken into account for every conductor design, especially for cable-in-conduit conductors (CICC) due to the additional influence of the jacket material. Therefore, a task has been launched in the framework of the European Fusion Technology Program to determine the residual thermal strain of single strands and different multi-stage conductors on absolute scale which is essential for the final optimization of the ITER TF conductor. For this purpose, an existing test rig for critical current measurements on single strands and multi-stage CICC as a function of strain and field, the FBI facility at the Forschungszentrum Karlsruhe, has been recently modified and modernized to improve the overall accuracy and resolution of the system. After a description of the facility, its capabilities and the recently performed upgrades, this paper explains the scheduled test program and the strategy to assess the impact of the cable pattern and size on the residual thermal strain. Results on Nb/sub 3/Sn strands jacketed in stainless steel are presented as well.
机译:Nb / sub 3 / Sn股线最重要的特性之一是临界电流密度的应变相关性,对于每种导体设计,尤其是对于导线管中的导体(CICC),都必须考虑到这一点,因为附加了外套材料的影响。因此,在欧洲融合技术计划的框架内发起了一项任务,以绝对规模确定单股和不同多级导体的残余热应变,这对于ITER TF导体的最终优化至关重要。为此,最近对卡尔斯鲁厄Forschungszentrum Karlsruhe的FBI设施进行了改造,并进行了现代化改造,以提高整体精度和分辨率。系统。在对设备,其功能和最近执行的升级进行了描述之后,本文介绍了预定的测试程序以及评估电缆图案和尺寸对残余热应变的影响的策略。还介绍了用不锈钢制成的Nb / sub 3 / Sn线束的结果。

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