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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Examination of Japanese Mass-Produced ${rm Nb}_{3}{rm Sn}$ Conductors for ITER Toroidal Field Coils
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Examination of Japanese Mass-Produced ${rm Nb}_{3}{rm Sn}$ Conductors for ITER Toroidal Field Coils

机译:日本批量生产的用于ITER环形场线圈的$ {rm Nb} _ {3} {rm Sn} $导体的检验

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The performances of six ${rm Nb}_{3}{rm Sn}$ conductors for the ITER Toroidal Field coils were tested. Four of them showed similar degradation rates of their current sharing temperatures $T_{cs}$ over 1,000 electromagnetic cycles. By contrast, two of them showed sharp $T_{cs}$ degradations at 50 cycles, after which their slopes became similar to those of the other four conductors. These two cables seemed to shrink under high magnetic fields during the first 50 cycles, which caused the sharp $T_{cs}$ degradation. This shrinkage might arise from a decline in cable rigidity due to, for example, the deformation of strands or the breakage of the ${rm Nb}_{3}{rm Sn}$ filaments. The four mass-produced conductors had roughly the same AC loss before cycling. After 1,000 cycles, the AC losses of all the conductors decreased markedly to less than half of those before cycling, and the values became approximately the same. After the test campaign, the destructive inspection of two of the conductors made it clear that the conductor had shrunk by about 520 ppm under the high magnetic field during the test. It was also clarified that some strands were visibly deformed under the high magnetic field, whereas those under the low magnetic field did not look distorted. This plastic deformation of the strands could be one of the major reasons for the $T_{cs}$ degradation with cyclic operation.
机译:测试了ITER环形场线圈的六根$ {rm Nb} _ {3} {rm Sn} $导体的性能。他们中的四个在1,000个电磁周期内显示出其均流温度T_ {cs} $的相似降解速率。相比之下,它们中的两个在50个周期内表现出$ T_ {cs} $急剧下降,此后它们的斜率变得与其他四个导体的斜率相似。这两根电缆在前50个周期内似乎在强磁场下收缩,从而导致$ T_ {cs} $急剧下降。这种收缩可能是由于电缆刚度下降而引起的,例如,由于股线的变形或$ {rm Nb} _ {3} {rm Sn} $丝的断裂。在循环之前,这四个量产的导体的交流损耗大致相同。在1,000次循环之后,所有导体的AC损耗均显着降低,不到循环前的一半,并且其值变得大致相同。在测试活动之后,对其中两个导体的破坏性检查表明,在测试过程中,该导体在强磁场下收缩了约520 ppm。还澄清了一些股在高磁场下明显变形,而在低磁场下的股看起来没有变形。股线的这种塑性变形可能是$ T_ {cs} $随着循环运行而降解的主要原因之一。

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