Study of mechanical properties and brittle fracture resistance for weld metal of WWER RPV

E. Yurchenko, M. N. Timofeev, B. Margolin, S. N. Galyatkin
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Abstract

The results of the study of mechanical properties and brittle fracture resistance (BFR) are presented for weld metal of WWER RPV performed by automatic arc welding with use welding wire Sv-15CrNiMoTiA and ceramic flux 48AF-71. Mechanical properties are determined on the basis of test results of tensile smooth round bar. BFR are determined from impact strength tests and fracture toughness tests. The anisotropy of mechanical properties and BFR is investigated by testing the specimens with different orientations. Tests are conducted for specimens of two orientations: first orientation corresponds to the position of the specimen, in which the fracture surface is perpendicular to the axis of the weld; second orientation corresponds fracture surface parallel to the axis of t he weld. It i s shown that the weld metal performed according to above mentioned technology has no anisotropy both in mechanical properties and in BFR. An explanation of the significant scatter of BFR on the basis of the results of metallographic studies is proposed. The obtained experimental results on mechanical properties for investigated weld metal allow to use tensile smooth round bar with 3 mm diameter with transverse orientation instead of specimens with 6 mm diameter with longitudinal orientation as the scale factor and anisotropy are negligible. The correlation dependence between the values of reference temperature T0 determined by the Master Curve method and reference temperature T100 determined by the Advanced Unified Curve method and the value of critical brittleness temperature TK0 for the studied weld metal in the initial state is established.
焊接金属的力学性能及抗脆性断裂性能研究
介绍了用Sv-15CrNiMoTiA焊丝和48AF-71陶瓷助焊剂对WWER RPV焊缝金属进行自动电弧焊的力学性能和抗脆性断裂性能的研究结果。根据拉伸光滑圆棒的试验结果确定了其力学性能。BFR由冲击强度试验和断裂韧性试验确定。通过对不同取向试样的测试,研究了其力学性能和BFR的各向异性。对两种方向的试样进行试验:第一种方向对应试样的位置,其中断口面垂直于焊缝轴线;第二个方向对应于与焊缝轴线平行的断口。结果表明,采用上述工艺制备的焊缝金属在力学性能和BFR方面均不存在各向异性。根据金相研究结果,对BFR的显著散点现象进行了解释。所获得的焊缝金属力学性能试验结果允许使用直径为3mm的横向拉伸光滑圆棒代替直径为6mm的纵向拉伸试件,其比例因子和各向异性可以忽略不计。建立了主曲线法确定的参考温度T0和高级统一曲线法确定的参考温度T100与所研究焊缝金属初始状态的临界脆性温度TK0之间的相关关系。
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