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The Dependence of Critical Diameter of Void Nuclei in ChS-68 Austenitic Steel on Temperature of Neutron Irradiation in the Model of Formation of Helium-Vacancy Bubbles

机译:氦空泡形成模型中ChS-68奥氏体钢中空核临界直径与中子辐照温度的关系

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摘要

The mechanism of void nucleation in ChS-68 austenitic steel induced by irradiation in a fast neutron reactor associated with formation of the complexes of helium vacancies and transmutation helium atoms is considered. The temperature dependence of the critical size of voids is calculated for the neutron radiation spectrum of the BN-600 fast breeder reactor. The data obtained are compared with the results of transmission electron microscopy studies of ChS-68 austenitic steel irradiated as a fuel cladding in the BN-600 reactor in the temperature range of 380-580℃.
机译:考虑了在快中子反应堆中通过辐照在ChS-68奥氏体钢中形成空核的机理,该机理与氦空位和trans变氦原子络合物的形成有关。对于BN-600快速增殖反应堆的中子辐射光谱,计算了空隙的临界尺寸的温度依赖性。将所得数据与在380-580℃温度范围内在BN-600反应堆中作为燃料包壳辐照的ChS-68奥氏体钢的透射电子显微镜研究结果进行了比较。

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