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A Novel 'Test Arrangement for Strain Influence on Strands' (TARSIS): Mechanical and Electrical Testing of ITER Nb_3Sn Strands

机译:一种新颖的“对股线的应变影响试验”(Tarsis):ITER NB_3SN股线的机械和电气测试

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Knowledge on the deformation state of the strands in International Thermonuclear Experimental Reactor (ITER) type Cable-In-Conduit Conductors (CICC) and its impact on both the transport properties and the superconducting transition is essential for optimal cable and magnet design. To date a relatively large part of the attention is concentrated on the influence of purely axial strain on the performance of Nb3Sn strands and sub-size cables. However, local deformations such as strand-to-strand, strand to conduit contact pressure and strand bending will occur as well in multi strand CICC's experiencing an electromagnetic load. More basic experimental verification is required on strand level from virgin state towards multi-cyclic loading. Therefore a new test arrangement is developed in which the influence of various principle deformation states that occur in a CICC, i.e. local transverse deformations, transverse homogeneous loads, bending and axial load, can be studied separately or combined. Beside precise displacement and force measurements for stress-strain analysis, the voltage-current and voltage-temperature characteristics are traced. A description of TARSIS is presented and the first preliminary results on periodical strand bending are reported.
机译:知识在国际热核实验反应堆股线的变形状态(ITER)型电缆在导管的导体(CICC)及其上的传输性能和超导转变为最佳电缆和磁体设计必需两者的影响。迄今为止的注意力相对大的部分集中在纯轴向应变对的Nb 3 Sn线材和子尺寸的电缆的性能的影响。然而,局部变形如链到链,链到导管接触压力和链弯曲将在多股线中金经历电磁负载发生为好。更基本的实验验证,需要对从原始状态向多循环加载链水平。因此新的测试装置被开发了其中发生在一个CICC各种原理变形状态,即本地的横向变形,横向均匀载荷,弯曲和轴向载荷的影响,可分别进行研究或组合。除了精确的位移和力的测量为应力 - 应变分析中,电压 - 电流和电压 - 温度特性被跟踪。塔西斯的描述被呈现和周期性链弯曲第一初步结果报告。

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