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MASTER CURVE TESTING OF REACTOR PRESSURE VESSEL MULTILAYER WELDING SEAMS

机译:反应堆压力容器多层焊接缝的主曲线测试

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Reactor pressure vessel (RPV) multilayer welding seams show an inhomogeneous structure. It raises concerns that the evaluation of non-uniform material might not be amenable to the statistical analysis methods on which the Master Curve approach is based. In particular with regard to weld metals, it can be expected that the cleavage fracture toughness is strongly influenced by the orientation of the Charpy size SE(B) specimen. The T-L oriented SE(B) specimen (axis axial and crack propagation in circumferential direction) comprises of various welding beads along the crack front whereas in a L-S specimen (axis axial and crack propagation through the thickness) the crack tip is located in one welding bead with an approximately uniform structure. The paper summarises fracture toughness results measured on welding seams of decommissioned and noncommissioned RPVs of WWER type nuclear reactors and the non-commissioned Biblis-C RPV. Specimens of T-L and T-S orientation were tested. The results show, that in general the cleavage fracture toughness values, K_(Jc-1T), follow the Master Curve description. However, the number of K_(Jc-1T) data outside the 2% and 98% tolerance bounds is larger than predicted by the underlying model, which indicates non-uniform material. There is a large variation in the evaluated through thickness T_0 values of the investigated multilayer beltline welding seams. Within the sampling range of the surveillance specimens, T_0 values vary with a span of 30 to about 60 K depending on the applied welding technology. The fracture toughness strongly depends on the intrinsic weld bead structure. Hence, the position of the fatigue crack tip of the pre-cracked SE(B) specimen at the multilayer welding seam is crucial and defines the cleavage fracture toughness. Modified Master Curve based evaluation procedures like the MC based approach of the SINTAP procedure were applied to get fracture toughness values which are representative for the most brittle fraction the test series. Despite of the pronounced non-homogeneity of the micro-structure along the crack front of T-L specimens, crack initiation sites are randomly distributed along the crack front. This means that one of the basic assumptions in ASTM E1921, i.e. the uniform distribution of initiation sites, is fulfilled also for the T-L specimens from the multilayer weld metal.
机译:反应堆压力容器(RPV)多层焊缝显示出不均匀的结构。这引起了人们的担忧,即不均匀材料的评估可能不适合基于“主曲线”方法的统计分析方法。特别是对于焊接金属,可以预期,夏比尺寸SE(B)试样的取向会严重影响劈裂断裂韧性。 TL取向的SE(B)试样(沿轴向的轴向和裂纹扩展)沿裂纹前沿包括各种焊缝,而LS试样(沿厚度的轴向和裂纹扩展)沿一次焊接定位裂纹尖端珠具有近似均匀的结构。本文总结了在WWER型核反应堆退役和未役RPV和未役Biblis-C RPV的焊缝处测得的断裂韧性结果。测试了T-L和T-S方向的样品。结果表明,通常劈裂断裂韧性值K_(Jc-1T)遵循主曲线描述。但是,超出2%和98%公差范围的K_(Jc-1T)数据的数量大于基础模型所预测的数量,这表明材料不均匀。所研究的多层带状线焊缝的通过厚度T_0的评估值之间存在很大差异。在监视样本的采样范围内,T_0值的范围在30到约60 K之间,具体取决于所采用的焊接技术。断裂韧性在很大程度上取决于固有的焊缝结构。因此,预裂纹的SE(B)试样的疲劳裂纹尖端在多层焊缝处的位置至关重要,并确定了断裂断裂韧性。应用改进的基于主曲线的评估程序(如SINTAP程序的基于MC的方法)来获得断裂韧性值,该值代表了测试系列中最脆的部分。尽管沿T-L试样的裂纹前沿的显微组织具有明显的不均匀性,但裂纹的起始位置却沿裂纹前沿随机分布。这意味着对于多层焊接金属的T-L试样,也满足了ASTM E1921的基本假设之一,即起始部位的均匀分布。

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