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A new modeling method for natural PWSCC cracking simulation in a dissimilar metal weld

机译:异种金属焊缝中自然PWSCC裂纹模拟的新建模方法

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摘要

Cracks found in a nuclear power plant reactor coolant system (RCS), such as primary water stress corrosion cracking (PWSCC) and intergranular stress corrosion cracking (IGSCC), usually have natural crack front shapes that can be very different from the idealized semi-elliptical or rectangular shapes considered in engineering handbooks and other analytical solutions based on limited shapes. Simplifications towards semi-elliptical shape or rectangular shape may potentially introduce unnecessary conservatism when the simplified shape has to contain the actual crack shape. On the other hand, it is very time-consuming to create a three-dimensional (3D) finite element (FE) model to simulate crack propagation in a natural shape using existing public-domain software like ABAQUS or ANSYS. In this study, a local deformation-based mesh-mapping (LDMM) method is proposed to model cracks with a natural front shape in any 3D structures. This methodology is first applied to model circumferential surface cracks with a natural crack front shape in the cross-sectional plane of a cylinder. The proposed new method can be applied to simulate both shallow and deep cracks. Also discussed in this paper is a direct method to reproduce welding residual stresses in the crack model using temperature fields combined with other sustained loads to predict crack propagations. With this novel LDMM method, natural crack fronts and non-planar crack faces can be easily modeled. The proposed new method can be used to generate a high-quality finite element model that can be used for both linear-elastic fracture mechanics (LEFM) and elastic-plastic fracture mechanics (EPFM) analyses. The study case illustrates that the proposed LDMM method is easy to implement and more efficient than the existing commercial software.
机译:在核电站反应堆冷却剂系统(RCS)中发现的裂纹,例如一次水应力腐蚀裂纹(PWSCC)和晶间应力腐蚀裂纹(IGSCC),通常具有自然的裂纹前部形状,该形状与理想化的半椭圆形非常不同。或工程手册和其他基于有限形状的分析解决方案中考虑的矩形形状。当简化的形状必须包含实际的裂纹形状时,将其简化为半椭圆形或矩形可能会导致不必要的保守性。另一方面,使用现有的公共领域软件(如ABAQUS或ANSYS)创建三维(3D)有限元(FE)模型以自然形状模拟裂纹扩展非常耗时。在这项研究中,提出了一种基于局部变形的网格映射(LDMM)方法来对任何3D结构中具有自然前部形状的裂纹进行建模。该方法首先应用于在圆柱体横截面中具有自然裂纹前部形状的圆周表面裂纹模型。所提出的新方法可用于模拟浅裂缝和深裂缝。本文还讨论了一种直接方法,该方法使用温度场与其他持续载荷相结合来预测裂纹扩展,从而在裂纹模型中重现焊接残余应力。使用这种新颖的LDMM方法,可以轻松地模拟自然裂缝前沿和非平面裂缝面。所提出的新方法可用于生成高质量的有限元模型,该模型可用于线性弹性断裂力学(LEFM)和弹塑性断裂力学(EPFM)分析。该研究案例表明,所提出的LDMM方法比现有的商业软件更易于实现且效率更高。

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