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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Conceptual design study of iron-based superconducting dipole magnets for SPPC
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Conceptual design study of iron-based superconducting dipole magnets for SPPC

机译:用于SPPC的铁基超导偶极磁体的概念设计研究

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摘要

A conceptual design study of 12-T two-in-one dipole magnets is ongoing with the iron-based superconducting (IBS) technology, as a candidate option for Super Proton Proton Collider (SPPC), which is designed with a circumference of 100 km and a center-of-mass energy of 70 TeV. Compared with Nb3Sn, the IBS design is competitive because of the potential much higher performance and lower cost of IBS conductors in the future. The design study is carried out with an expected Je level of IBS in 10 years. Besides, we also expect the IBS superconductor to have much better mechanical properties compared to stress-sensitive conductors like Nb3Sn and Bi-2212 wires. The 12-T dipole magnet is designed with common-coil configuration. We have optimized the field uniformity with two different layouts of the coil ends, including the soft-way bending and the hard-way bending. We also have explored the influence of a mid-plane gap on the field uniformity. The main parameters, the coil layouts, and the optimization of the field quality are presented.
机译:概念性设计研究与铁基超导(IBS)技术持续,作为超级质子质子撞机(SPPC)的候选方案,其设计为100km的圆周和70 Tev的质量中心。与NB3SN相比,由于未来IBS导体的潜在更高的性能和降低成本,IBS设计与IBS设计具有竞争力。设计研究在10年内以预期的je IBS进行。此外,与NB3SN和BI-2212线等应力敏感导体相比,我们还期望IBS超导体具有更好的机械性能。 12-T偶极磁铁设计有共轨配置。我们已经优化了与线圈端的两种不同布局的现场均匀性,包括软焊接和硬质弯曲。我们还探讨了中间差距对现场均匀性的影响。提出了主要参数,线圈布局和现场质量的优化。

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