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The use of Nb3Sn in fusion: lessons learned from the ITER production including options for management of performance degradation

机译:使用NB3SN在融合中:从erter生产中汲取的经验教训,包括管理性能下降的选项

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摘要

The overall 30 year Nb3Sn conductor program for ITER provides an unusual opportunity to look at the issues created by the application of novel Nb3Sn technology on a large scale. ITER design criteria have evolved to make use of the features of the industrialized material, exploiting advantages as well as managing the disadvantages. There are lessons from the successes and failures to be learned for the future application of very high current Nb3Sn strands in fusion and high energy physics. The behaviour of Nb3Sn strands in the large compound ITER conductors is still producing surprises after 25 years of development, industrial production and testing, with the Nb3Sn strain sensitivity and brittleness producing many more subtle design impacts than originally foreseen. The results now obtained at the end of the ITER production suggest that, as a novelty for Nb3Sn, there are options for conditioning the strands in the ITER conductors that can be applied during commissioning and which could reduce the impact of brittleness by as much as one third.
机译:整个30年的ITER NB3SN指挥计划提供了一种不寻常的机会,可以在大规模上进行新的NB3SN技术应用创建的问题。 ITER设计标准已经进化为利用工业化材料的特点,利用优势以及管理缺点。有关富裕和高能量物理中的非常高电流NB3SN股的未来应用,还有课程。大型复合镜头导体中NB3SN股线的行为仍在产生25年的开发,工业生产和测试后产生惊喜,具有NB3SN应变敏感性和脆性,产生比最初预见的更微妙的设计影响。现在在ITER生产结束时获得的结果表明,作为NB3SN的新颖性,有选择在调试期间可以应用的IRER导体中的股线调节股线,这可以减少脆弱性的影响第三。

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