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Constraint effects for a reactor pressure vessel subjected to pressurized thermal shock

机译:反应堆压力容器受热冲击的约束效应

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Transferability of fracture toughness data obtained on small scale specimens to a full-scale cracked structure involves both in-plane and out-of-plane constraint effects. Both in-plane and out-of-plane constraint effects of a crack in a reference reactor pressure vessel (RPV) subjected to pressurized thermal shock (PTS) are analyzed by two-parameter and three-parameter methods. T_(11) (the second term of William's extension acting parallel to the crack plane) generally displays a reversed relation to the stress intensity factor (SIF) with the transient time, which indicates that the loading (SIF) plays an important role on the in-plane constraint effect. T_(33) (the second term of William's extension acting along the thickness) displays a different relation to T_(11) during the transient. The results demonstrate that both in-plane and out-of-plane constraint effect should be analyzed separately in order to describe precisely the stress distribution ahead of the crack tip. The local approach to fracture, i.e. σ~*-A~* model is used to predict the in-plane and out-of-plane constraint effect by considering the micro mechanism of cleavage fracture.
机译:在小规模试样上获得的断裂韧性数据到全尺寸裂纹结构的可传递性涉及面内和面外约束效应。通过两参数和三参数方法分析了在参考反应堆压力容器(RPV)中受到热冲击(PTS)的裂纹的面内和面外约束效应。 T_(11)(William延伸的第二项平行于裂纹平面起作用)通常与应力强度因子(SIF)随瞬态时间呈反比关系,这表明载荷(SIF)在结构上起着重要的作用。平面内约束效应。 T_(33)(William延伸的第二项沿厚度作用)在瞬态过程中显示出与T_(11)的不同关系。结果表明,应分别分析面内和面外约束效应,以便精确描述裂纹尖端之前的应力分布。考虑到劈裂断裂的微观机理,采用局部断裂方法,即σ〜* -A〜*模型来预测面内和面外约束效应。

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