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Dynamic crack propagation and arrest in PWR pressure vessel steel:Interpretation of experiment with the X-FEM method.

机译:PWR压力容器钢的动态裂纹繁殖与阻塞:用X-FEM法的解释。

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In the frame of analysis of the pressure thermal shock in a PWR RVP and the associated R&D activities, some developments are performed at CEA on the dynamic brittle propagation and crack arrest. This paper presents a PhD work on the modeling of the dynamic brittle crack growth. For the analyses, an important experimental work is performed on different geometries using a French RPV ferritic steel: Compact Tension specimens with different thickness, isothermal rings under compression with different positions of the initial defect to study a mixed mode configuration, and a ring submitted to thermal shock. The first part of this paper details the test conditions and main results. To propose an accurate interpretation of the crack growth, a viscous-elastic-plastic dynamic model is used. The strain rate influence is taken into account based on Cowper-Symond's law (characterization was made from Split Hopkinson Pressure Bar tests). To model the crack propagation in the Finite Element calculation, extended Finite Element Method (X-FEM) is used. The implementation of these specific elements in the CEA F.E. software CAST3M is described in the second part of this paper. This numerical technique avoids re-meshing, because the crack progress is directly incorporated in the degrees of freedom of the elements crossed by the crack. The last part of this paper compares the F.E. predictions to the experimental measurements using different criteria. In particular, we focused on a RKR (Ritchie-Knott-Rice) like criterion using a critical principal stress in the front of the crack tip during the dynamic crack extension. Critical stress is found to depend on crack speed, or equivalently on strain rate. Good results are reported concerning predictive simulations.
机译:在PWR RVP和相关的研发活动中的压力热冲击的分析框架中,在CEA上进行了一些发展,对动态脆性传播和裂缝停止进行了影响。本文提出了一种博士学位论动态脆性裂纹增长的建模。对于分析,使用法国RPV铁素体钢对不同几何形状进行重要的实验工作:紧凑的张力样品,具有不同厚度的,压缩下的等温环,具有初始缺陷的不同位置,以研究混合模式配置,以及提交的环热震动。本文的第一部分详细说明了测试条件和主要结果。为了提出对裂缝生长的准确解释,使用粘性弹性塑料动态模型。基于Codper-Symond的定律,考虑了应变率影响(表征由普通霍普金森压力杆测试制成)。为了模拟有限元计算中的裂缝传播,使用扩展有限元方法(X-FEM)。在本文的第二部分中描述了CEA F.e.软件CAST3M中这些特定元素的实现。该数值技术避免重新啮合,因为裂缝进展直接纳入由裂缝交叉的元素的自由度。本文的最后一部分比较了使用不同标准对实验测量的预测。特别地,我们专注于使用突出尖端前部的临界主应力在动态裂纹延伸期间使用临界主应力等标准。发现临界压力取决于裂缝速度,或对应变率等效。报告了良好的结果有关预测模拟。

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