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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Epoxy Resins for Vacuum Impregnating Superconducting Magnets: A Review and Tests of Key Properties
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Epoxy Resins for Vacuum Impregnating Superconducting Magnets: A Review and Tests of Key Properties

机译:用于真空浸渍超导磁体的环氧树脂:关键性能的回顾和测试

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摘要

Epoxy impregnated superconducting magnets often have a long quench training and an uncertain performance. This is particularly an issue for Nb3Sn accelerator magnets planned for future high-energy proton colliders, which need thousands of such magnets. This paper reviews epoxies used in major Nb3Sn superconducting magnet systems, sorts them into three groups, and examines differences of their resistances to cracking when subjected to repeated thermal shocks and other key properties. The first group, including CTD-101K using which nearly all Nb3Sn accelerator magnets have been potted, is found to be brittle and prone to cracking. A second epoxy group is shown to have a much higher toughness. Their mechanical properties, potting characteristics, and glass transition temperatures were measured, compared, and discussed in terms of the potential uses of the second epoxy group for impregnating Nb3Sn accelerator magnets with a minimized training.
机译:环氧树脂浸渍的超导磁体通常具有很长的淬火训练并且性能不确定。对于计划用于未来的高能质子对撞机的Nb3Sn加速器磁体来说,这尤其是个问题,它需要成千上万个此类磁体。本文回顾了主要的Nb3Sn超导磁体系统中使用的环氧树脂,将其分为三类,并研究了它们在反复遭受热冲击和其他关键特性时抗裂性的差异。第一组,包括CTD-101K,几乎所有Nb3Sn加速器磁体都用CTD-101K灌封,发现它们很脆并且容易开裂。显示第二环氧基具有更高的韧性。测量,比较和比较了它们的机械性能,灌封特性和玻璃化转变温度,并讨论了第二种环氧基以最小的培训量浸渍Nb3Sn促进剂磁体的潜在用途。

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