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Neutron irradiation effects on superconducting wires and insulating materials

机译:中子辐照对超导线材和绝缘材料的影响

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On the progress of the Deuterium-Deuterium (D-D) or Deuterium-Tritium (D-T) burning plasma devices, the importance of neutron irradiation on superconducting magnet materials increases and the data base is desired to design the next generation devices. To carry out the investigations on the effect of neutron irradiation, neutron irradiation fields are required together with post-irradiation test facilities. In these several years, a collaboration network of neutron irradiation effect on superconducting magnet materials has been constructed. 14MeV neutron irradiation was carried out at Fusion Neutronics Sources (FNS) in Japan Atomic Energy Agency (JAEA) and fission neutron irradiation was performed at JRR-3 in JAEA. After the irradiation, the Nb_3 Sn, NbTi and Nb_3 Al samples were sent to High Field Laboratory for Superconducting Materials (HFLSM) in Tohoku University and the superconducting properties were evaluated with 28T hybrid magnet. Also, the organic insulation materials are considered to be weaker than superconducting materials against neutron irradiation and cyanate ester resin composite was fabricated and tested at the fission reactor. One clear result on Nb_3Sn was the property change of Nb_3Sn by 14MeV neutron irradiation over 13 T. The critical current was increased by 1.4 times around 13 T but the increment of the critical current became almost zero at higher magnetic fields and the critical magnetic field of the irradiated sample showed almost the same as non-irradiated one.
机译:随着氘-氘(D-D)或氘-rit(D-T)燃烧等离子体装置的发展,中子辐照在超导磁体材料上的重要性增加,因此需要数据库来设计下一代装置。为了对中子辐照的影响进行研究,需要中子辐照场和辐照后的测试设备。在这几年中,已经建立了中子辐照对超导磁体材料的协作网络。 14MeV中子辐照是在日本原子能机构(JAEA)的Fusion Neutronics Sources(FNS)进行的,裂变中子辐照是在JAEA的JRR-3进行的。辐照后,将Nb_3 Sn,NbTi和Nb_3 Al样品送至东北大学超导材料高场实验室(HFLSM),并用28T混合磁体评估超导性能。同样,有机绝缘材料被认为比中子辐照比超导材料更弱,并且在裂变反应堆中制造并测试了氰酸酯树脂复合材料。 Nb_3Sn的一个明显结果是在13 T上14MeV中子辐照Nb_3Sn的性质变化。在13 T附近临界电流增加了1.4倍,但是在更高的磁场和临界磁场下,临界电流的增量几乎变为零。辐照后的样品与未辐照样品几乎相同。

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