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Synergistic Mechanism of Radiation Embrittlement of Austenitic Stainless Steels under Long-Term High-Temperature Irradiation

机译:长期高温辐射下奥氏体不锈钢辐射脆化的协同机理

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摘要

—The results of studying the mechanisms of fracture and embrittlement of the Kh18N9 and Kh18N10T austenitic steels under long-term neutron irradiation at elevated temperatures are given. The effects of the temperature and time of irradiation and the neutron radiation dose on the fracture strain and fracture mechanisms are analyzed. On the basis of the results obtained and specially performed experiments, a synergistic mechanism of embrittlement of the material under conditions of long-term high-temperature irradiation is proposed and substantiated, which is determined by the following two factors: thermal aging and helium diffusion. The thermal aging leads to the formation of various phases at grain boundaries and, hence, to a decrease in the grain boundary strength. Helium diffusion at elevated temperatures gives rise to the accumulation and growth of helium bubbles at weakened grain boundaries.
机译:-给出了在高温下长期中子辐照下Kh18N9和Kh18N10T奥氏体钢的断裂和脆化机理的研究结果。分析了辐照温度和时间以及中子辐照剂量对断裂应变和断裂机理的影响。根据获得的结果和专门进行的实验,提出并证实了在长期高温辐照条件下材料脆化的协同机理,该机理由热老化和氦扩散两个因素决定。热时效导致在晶界处形成各种相,因此导致晶界强度降低。高温下的氦扩散会导致弱晶界处氦气泡的积累和生长。

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