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Performance of an ITER CS1 Model Coil Conductor under T ransverse Cyclic Loading up to 40,000 cycles

机译:ITER Cs1型线圈导体在T反向循环加载下的性能高达40,000次循环

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摘要

The large currents in the cable-in-conduit conductors (CICC) destined for the high field magnets in the International Thermonuclear Experimental Reactor (ITER), cause huge transverse forces on the strands compressing the cable against one side of the conduit. This load causes transverse compressive strain in the strands at the crossovers contacts. Moreover, the strands are also subjected to bending and contact surfaces micro-sliding, which results into friction and anomalous contact resistance versus force behavior. Three Nb/sub 3/Sn central solenoid model coil (CSMC) conductors were tested previously in the Twente Cryogenic Cable Press up to 40 cycles with a transverse peak load of 650 kN/m. This press can transmit a variable (cyclic) transverse force directly to a cable section of 400 mm length at a temperature of 4.2 K (or higher). To explore life-time cycling, we tested a CSMC Nb/sub 3/Sn conductor up to 40,000 cycles. The coupling loss and the associated interstrand resistance between various strands and strand bundles are measured at various loads. The force on the cable and the displacement are monitored in order to determine the effective cable Young's modulus and the mechanical heat generation. Some aspects of strand deformation in CICC's are discussed. The test results are discussed in view of previous press results and data extracted from the ITER model coil tests.
机译:预定用于国际热核实验堆(ITER)中高磁场磁体的电缆导管内导体(CICC)中的大电流会在绞线上产生巨大的横向力,从而使电缆紧靠导管的一侧压缩。该载荷在跨接触头处的股线中产生横向压缩应变。此外,股线还经受弯曲和接触表面微滑动,这导致摩擦和异常的接触电阻对力的行为。先前已在Twente低温电缆压机中测试了三根Nb / sub 3 / Sn中央螺线管模型线圈(CSMC)导体,最多进行40个循环,横向峰值载荷为650 kN / m。该压力机可以在4.2 K(或更高)的温度下将可变的(周期性)横向力直接传递到400 mm长的电缆段。为了探索寿命周期的循环,我们测试了CSMC Nb / sub 3 / Sn导体的最大循环次数为40,000。在各种负载下测量各种线束和线束之间的耦合损耗和相关的线间电阻。监视电缆上的力和位移,以确定有效的电缆杨氏模量和机械发热。讨论了CICC中钢绞线变形的某些方面。结合先前的压机结果和从ITER模型线圈测试中提取的数据来讨论测试结果。

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