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Validation test of fusion grade superconductors

机译:融合级超导体的验证测试

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摘要

The need of high magnetic field for long pulse operation of Tokamaks and future fusion reactors is an essential requirement. The superconducting magnets operating at low temperature, high current and produce high magnetic field for long time can certainly full-fill this requirement. Three types of magnets namely central solenoid, toroidal filed and poloidal filed are used for initiation, confinement and equilibrium of plasma. The presently available basic conductors for these magnets are Nb3Sn, Nb3Al, NbTi and MgB2. The presently operating SST-1 Tokamak has superconducting magnets made up of NbTi as basic conductor. The design and prototype initiative for SST-2 magnets has also begun at IPR. The low temperature and high magnetic field characterization of in-house developed and commercial superconducting strands have also been initiated in the custom made standard test facility at IPR. Encouraging results on testing of Nb3Sn, NbTi and MgB2 have been found for suitability of these conductors for magnets and current leads. The basic test set up and test results of fusion grade conductors will be discussed in this presentation.
机译:对于托卡马克斯和未来融合反应器的长脉冲操作的高磁场的需要是必不可少的要求。在低温下操作的超导磁铁,长时间长时间工作,高电流和高磁场可以全面填充该要求。三种类型的磁铁即中心螺线管,环形归档和面为血浆的引发,限制和平衡。这些磁体的目前可用的基本导体是Nb3sn,Nb3al,NBTI和MGB2。目前操作的SST-1 Tokamak具有由NBTI作为基本导体构成的超导磁铁。 SST-2磁铁的设计和原型主动也在IPR开始。在IPR的定制标准测试设施中也启动了内部开发和商业超导股的低温和高磁场表征。已经找到了对NB3SN,NBTI和MGB2进行了令人振奋的结果,以适合这些导体用于磁体和电流引线。将在本演示文稿中讨论融合级导体的基本测试设置和测试结果。

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