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Framework of Collaboration Investigation on Neutron Effect on Superconducting Magnet Materials

机译:中子对超导磁体材料影响的合作研究框架

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摘要

A fusion reactor will generate D-T neutron and the kinetic energy of the neutron will be converted to the thermal energy and electrical energy. The neutron has huge energy and will be able to penetrate a shielding blanket and stream out of ports for neutral beam injections. The penetrated and streamed out neutrons will reach superconducting magnets and make some damages on the magnet system. To investigate the neutron irradiation effects on the superconducting magnet materials, a collaborative network must be organized and the irradiation researches must be performed. This report will describe the framework of the collaboration investigation which has been established among neutronics, superconducting magnet and fusion system. After showing the collaboration scheme, some new results on 14 MeV neutron irradiation effect are presented. Then, a three years new project which was adopted as one of "Nuclear basic infrastructure strategy study initiatives" by MEXT will be introduced as an example of collaborative program among superconducting materials, fission reactor and high magnetic field technology
机译:聚变反应堆将产生D-T中子,中子的动能将转换为热能和电能。中子具有巨大的能量,将能够穿透屏蔽层并从端口流出以进行中性束注入。渗透并流出的中子将到达超导磁体,并对磁体系统造成一些损害。为了研究中子辐照对超导磁体材料的影响,必须组织一个协作网络并进行辐照研究。本报告将描述在中子学,超导磁体和聚变系统之间建立的合作研究的框架。在展示了合作方案之后,提出了有关14 MeV中子辐照效应的一些新结果。然后,将介绍一项为期三年的新项目,该项目被MEXT用作“核基础设施战略研究计划”之一,作为超导材料,裂变反应堆和高磁场技术之间合作计划的示例

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