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Fracture toughness of welded joints materials for main pipelines at Ignalina NPP

机译:伊格纳利纳核电站主要管道焊接接头材料的断裂韧性

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This paper deals with an investigation of mechanical and fracture toughness characteristics of welded joint materials used in Ignalina Nuclear Power Plant (NPP) reactor main circulating circuit (MCC) and steam pipelines. Basic metal of MCC group distributing header (GDH) steel 08Chl8N10T (Du-300), its weld metal welded by manual and automatic arc method using the wire SV-04Ch19N11M3 and electrodes EA-100/10U or EA-100/10T, this joint heat-affected zone metal and base metal of the main steam system—steel 16GS (DU-630) and its weld metal welded by manual arc method using the wire SV-08GS2 and electrodes UONI-13/55 were tested. Mechanical properties of welded joints materials—proportional limit (σ_(pl)), yield (σ_y) and ultimate (σ_u) strength, fracture stress (σ_f) and ductility (Z) (percent reduction of area) of the specimens were determined. Investigation of relative critical stress intensity factor for fixed thickness of the specimen K_C~* and critical J-integral, J_(IC), was performed. The probabilistic investigation of influence of the mechanical properties (σ_(pl), σ_y, σ_u) onto fracture toughness characteristics K_C~* and J_(IC) for tested materials by using linear regression model with three independent variables was performed. Research enabled to conclude that proposed multivariable regression model with 80% probability (confidence coefficient α = 0.05) has explained reasonably well the dependence of K_C~* with σ_(pl), σ_y, σ_u and it has shown the non-acceptability of probabilistic evaluation of the model with respect to J_(IC).
机译:本文研究了伊格纳利纳核电站(NPP)反应堆主循环回路(MCC)和蒸汽管道中使用的焊接接头材料的机械和断裂韧性特性。 MCC集团配电总管(GDH)钢08Chl8N10T(Du-300)的基础金属,其焊接金属是通过手工和自动电弧方法使用SV-04Ch19N11M3焊丝和EA-100 / 10U或EA-100 / 10T焊条焊接而成的,该接头测试了主要蒸汽系统的热影响区金属和贱金属-钢16GS(DU-630)及其使用SV-08GS2焊丝和电极UONI-13 / 55通过手工电弧焊焊接的焊接金属。确定了焊接接头材料的机械性能-比例极限(σ_(pl)),屈服强度(σ_y)和极限强度(σ_u),断裂应力(σ_f)和延展性(Z)(面积减少率)。对固定厚度的试样K_C〜*和临界J积分J_(IC)进行了相对临界应力强度因子的研究。利用具有三个独立变量的线性回归模型,对力学性能(σ_(pl),σ_y,σ_u)对被测材料的断裂韧性特征K_C〜*和J_(IC)的影响进行了概率研究。研究得出的结论是,提出的概率为80%的多元回归模型(置信系数α= 0.05)已经很好地解释了K_C〜*与σ_(pl),σ_y,σ_u的依赖关系,并表明了概率评估的不可接受性关于J_(IC)的模型的模型。

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