FFTF as an irradiation test bed for fusion materials and components

FFTF as an irradiation test bed for fusion materials and components
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FFTF 作为聚变材料和组件的辐照试验台

DOI:
10.1016/0022-3115(86)90137-6
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发表时间:
1986
期刊:
影响因子:
--
通讯作者:
J. Grover
J. Grover
中科院分区:
--
文献类型:
--
作者:
D. Greenslade;R. Puigh;G. Hollenberg;J. Grover

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与快通量测试设备(FFTF)相关的相对较大的辐照体积、仪器能力和快中子通量使该反应堆成为聚变材料和部件辐照的有用试验台。重要的聚变材料辐照目前正在FFTF的材料开放测试组件(MOTA)中进行。MOTA正在为低活度合金、铜合金、陶瓷绝缘体和高热通量组件等材料提供受控的温度和高中子通量环境。利用多功能MOTA辐照装置的概念设计已经被开发出来,以研究辐照对固体增殖材料的机械和氚增殖行为的影响。还开发了更积极的概念设计来照射FFTF中的固体增殖包层子模块。提出了这些特定的部件测试设计,并讨论了它们在聚变技术发展中的潜在作用。
The relatively large irradiation volume, instrumentation capabilities, and fast neutron flux associated with the Fast Flux Test Facility (FFTF) make this reactor a useful test bed for fusion materials and components irradiations. Significant fusion materials irradiations are presently being performed in the Materials Open Test Assembly (MOTA) in FFTF. The MOTA is providing a controlled temperature and high neutron flux environment for materials such as low activation alloys, copper alloys, ceramic insulators, and high heat-flux components. Conceptual designs utilizing the versatile MOTA irradiation vehicle have been developed to investigate irradiation effects on the mechanical and tritium breeding behaviors of solid breeder materials. More aggressive conceptual designs have also been developed to irradiate solid breeder blanket submodules in the FFTF. These specific component test designs are presented and their potential roles in the development of fusion technology discussed.
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