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Development of High Chromium Steel for Fast Breeder Reactors with High-temperature Strength, Ductility, and Microstructural Stability

机译:具有高温强度,延展性和微结构稳定性的快中子反应堆用高铬钢的开发

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The applicability of high chromium (Cr) steel as the main structural material in fast breeder reactors (FBR) has been explored to enhance the safety, the credibility and the economic competitiveness of FBR power plants. Vanadium (V) and Niobium (Nb) are believed to improve the high-temperature strength of high Cr steels by precipitating as carbides and/or nitrides, namely fine MX particles, although the long-term efficiency and stability of such precipitation strengthening mechanisms resulting from the fine MX particles have not been clarified yet. The effects of V and Nb on degradation of creep properties were investigated under FBR operating conditions, e.g. , at 550°C for 500000 h, and the relationship between the long-term creep properties and microstructural changes was investigated considering the MX particles and the Z-phase. It was found that the optimal V and Nb contents for excellent high Cr steel of FBR grade are 0.2 mass% and <0.01 mass%, respectively, under FBR operating conditions.
机译:为了提高FBR电厂的安全性,信誉度和经济竞争力,已经探索了高铬(Cr)钢作为快中子增殖堆(FBR)的主要结构材料的适用性。据信,钒和铌通过析出为碳化物和/或氮化物(即细小的MX颗粒)来改善高铬钢的高温强度,尽管这种析出强化机制的长期效率和稳定性导致尚未从MX细颗粒中澄清。在FBR操作条件下,例如,研究了V和Nb对蠕变性能退化的影响。在550°C下进行了500000 h,并考虑了MX颗粒和Z相,研究了长期蠕变性能与微观结构变化之间的关系。发现在FBR操作条件下,FBR等级的优良高Cr钢的最佳V和Nb含量分别为0.2质量%和<0.01质量%。

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