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Study of the stress intensity factor analysis through thickness: methodological aspects

机译:通过厚度进行应力强度因子分析的研究:方法论方面

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This paper is focused on the methodological aspects of the numerical study of stress intensity factor (SIF) evolution through thickness. The work evaluates the modelling of an Al-alloy 2024-T351 CT specimen under mode I nominal loading in fracture. No plastic wake effect is introduced to separate the influence of plasticity-induced crack closure near the surface. Numerical models have shown the complexity 3-D behaviour in the vicinity of the crack front and finite element methods (FEM) are widely used in these problems with interesting results. However, there is a lack of literature support in many simplifying assumptions. In previous studies, authors have analysed some issues as the evolution of the plastic zone, the crack closure stress or the SIF. The current work attempts to describe and justify the key aspects of the methodology developed to address these problems by the FEM. A huge effort has been made to study main parameters involved and their influence in the results, especially in order to properly capture the SIF distribution along the thickness. Recommendations about mesh density are provided, and the main procedures to obtain K are discussed.
机译:本文重点研究应力强度因子(SIF)随厚度变化的数值研究的方法论方面。这项工作评估了I型名义断裂载荷下铝合金2024-T351 CT试样的建模。没有引入塑性唤醒效应来分离可塑性引起的表面附近裂纹闭合的影响。数值模型显示了裂纹前沿附近的复杂3D行为,有限元方法(FEM)在这些问题中得到了广泛应用,并获得了有趣的结果。但是,在许多简化的假设中缺乏文献支持。在以前的研究中,作者分析了一些问题,例如塑性区的演变,裂纹闭合应力或SIF。当前的工作试图描述并证明由FEM解决这些问题的方法的关键方面。为了研究所涉及的主要参数及其对结果的影响,已经做出了巨大的努力,特别是为了正确捕获沿厚度方向的SIF分布。提供了有关网格密度的建议,并讨论了获得K的主要过程。

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