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Nitrogen Enhanced 316LN Austenitic Stainless Steel for Sodium Cooled Fast Reactors

机译:用于钠冷却的快速反应器的氮素增强316LN奥氏体不锈钢

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For the future sodium-cooled fast reactors (SFRs), which are envisaged with a design life of 60 years, nitrogen-enhanced 316LN austenitic stainless steel (SS) with improved high-temperature properties is being developed. To optimize the enhanced nitrogen content in 316LN SS, the effect of nitrogen on its tensile, creep and low cycle fatigue behavior has been investigated. For different heats of 316LN SS containing 0.07-0.22 wt% nitrogen, the tensile and creep properties increased with increase in nitrogen content, while low cycle fatigue properties peaked at 0.14 wt% nitrogen. Finally, based on the evaluation of the hot cracking susceptibility of the different heats of 316LN SS with varying nitrogen content, using the Varestraint and Gleeble hot-ductility tests, the nitrogen content for the nitrogen-enhanced 316LN SS has been optimized at a level of 0.14 wt%. The 0.14 wt% nitrogen content in this optimised composition shifts the solidification mode of the weld metal to fully austenitic region, including that due to dilution of nitrogen from the base metal, thereby increasing its hot cracking susceptibility. This necessitated development and qualification of welding electrodes for obtaining weld metal with 0.14 wt% nitrogen by optimising the weld metal chemistry so as to obtain the requisite delta ferrite content, tensile properties, and very importantly impact toughness both in the as-welded and aged conditions. Studies on localised corrosion behaviour of nitrogen-enhanced 316LN SS indicated the beneficial effect of nitrogen addition to sensitization, pitting, intergranular corrosion, stress corrosion cracking and corrosion fatigue.
机译:对于未来的钠冷却的快速反应器(SFR),其设想为60岁的设计寿命,正在开发具有改善的高温性质的氮增强316Ln奥氏体不锈钢(SS)。为了优化316LN SS中的增强氮含量,研究了氮对其拉伸,蠕变和低循环疲劳行为的影响。对于含有0.07-0.22wt%氮的316Ln SS的不同热量,拉伸和蠕变性质随着氮含量的增加而增加,而低循环疲劳性能达到0.14wt%氮。最后,基于评价316Ln SS的不同热量的热裂化敏感性,使用氮含量和Gleyble热延展性测试,氮增强316LnSS的氮含量在含量的水平上进行了优化0.14 wt%。该优化组合物中的0.14wt%氮含量将焊接金属的凝固模式转移到完全奥氏体区域,包括由于稀释来自基础金属的氮,从而增加其热裂解敏感性。这种需要通过优化焊接金属化学获得焊接电极的焊接电极的焊接和鉴定,以获得必要的达雷卡铁氧体含量,拉伸性能,以及在焊接和老化条件下非常重要地冲击韧性。氮素增强316Ln SS局部腐蚀行为的研究表明,氮气添加到致敏,蚀,晶间腐蚀,应力腐蚀裂纹和腐蚀疲劳的有益效果。

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