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ASSESSMENT OF LEAN GRADE DUPLEX STAINLESS STEELS FOR NUCLEAR POWER APPLICATIONS

机译:评估核电力应用精益级双相不锈钢钢

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This research assesses the thermal stability of lean grades of duplex stainless steel relative to standard grade alloys. Both hot rolled plate and gas-tungsten-arc weld deposits of selected alloys were isothermally aged in the temperature regime of a-a' phase separation (T = 800°F / 427°C) for times up to 1,000 hours. The degree of embrittlement was assessed via changes in hardness and Charpy impact energy. Additionally, the materials were characterized by light optical microscopy, electron microprobe analysis (EMPA), analytical electron microscopy (AEM), and x-ray diffraction (XRD) to better understand the factors that affect embrittlement. Impact testing shows that at equivalent thermal exposure, small changes in alloy composition have a significant effect on the degree of embrittlement. Microscopy reveals that spinodal decomposition of the ferrite occurs in all the alloys tested at 800°F (427°C). Additionally, transmission electron microscopy shows complex intermetallic formation, likely G phase, in the standard grade weld metal. Relative to their standard grade counterparts, both the lean grade plate and the lean grade weld deposit display ~10X slower embrittlement kinetics for the conditions studied. Despite the relatively complex metallurgy of these alloys, this research indicates that lean grade duplex stainless steels could have broad applicability to lower temperature components in nuclear power systems.
机译:该研究评估了双相不锈钢相对于标准级合金的贫级热稳定性。所选合金的热轧板和气体钨弧焊沉积物在A-A相分离(T = 800°F / 427℃)的温度方案中是高达1,000小时的温度调味。通过硬度和夏比冲击能量的变化评估脆化程度。另外,通过光学显微镜,电子微探测(EMPA),分析电子显微镜(AEM)和X射线衍射(XRD)的特征在于,以更好地理解影响脆化的因素。冲击试验表明,在等效的热暴露中,合金组合物的小变化对脆化程度具有显着影响。显微镜显示显示,铁素体的旋光膜分解在800°F(427℃)的所有合金中发生。另外,透射电子显微镜显示出标准焊接金属中的复杂金属间形成,可能的G相。相对于其标准级对应物,贫级板材和贫级焊接沉积件显示〜10x较慢的脆性动力学进行研究。尽管这些合金的冶金相对复杂,但该研究表明精益级双面不锈钢钢可以具有广泛适用于核电力系统中的温度分量。

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