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Impact of Void Fraction on Mechanical Properties and Evolution of Coupling Loss in ITERtex$rm Nb_3rm Sn$/texConductors Under Cyclic Loading

机译:空隙率对循环加载下ITER $ RM NB_3RM NB_3RM SN $ 导体的机械性能和耦合损失的演化

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摘要

The combination of current up to 50 kA and magnetic field of 13 T in the Cable-In-Conduit Conductors (CICC) for the coils in the International Thermonuclear Experimental Reactor (ITER), cause huge local transverse forces. This results in changes in the transport properties, friction and anomalous contact resistance versus force behavior. The latest design optimizations tend to go toward a lower void fraction (VF). This has an impact on the evolution of the coupling loss and on the possible degree of strand bending and deformation. Toroidal Field Model Coil (TFMC) type of conductors with VFs of 26%, 30% and 36% respectively, are tested in the Twente Cable Press, by which a variable (cyclic) transverse force of 650 kN/m is transferred directly to a cable section of 400 mm length at 4.2 K. The AC loss of the conductor, the inter-strand and strand-bundle resistance (R/sub c/) in the cable and the associated bundle deformation are examined during mechanical cycling. The test results are discussed in view of the previous results on Nb/sub 3/Sn ITER CICCs.
机译:在国际热核实验反应器(浸泡)中,电缆导管导线(CICC)中电流高达50ka和磁场13t的组合,导致局部横向力。这导致运输性能,摩擦和异常接触电阻与力行为的变化。最新的设计优化往往朝向较低的空隙率(VF)。这对耦合损失的演变和可能的股线弯曲和变形程度产生了影响。环形领域模型线圈(TFMC)型导体分别为26%,30%和36%,在Twente电缆压力机中测试,通过该电缆压力机,通过该电缆压力机,650kN / m的变量(环状)横向力直接转移到a在机械循环期间检查电缆的400 mm长度为400mm长度的电缆部分,电缆中的股线和股线 - 束电阻(R / Sub C /),在机械循环期间检查。考虑到先前的NB / SUS 3 / SN ITER CICCS的结果讨论了测试结果。

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