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Modelling brittle crack formation at geometrical and material discontinuities using a finite fracture mechanics approach

机译:使用有限断裂力学方法对几何和材料不连续处的脆性裂纹形成进行建模

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In this study, finite fracture mechanics procedures are employed to predict crack formation at geometrical and material discontinuities in brittle elastic structures. A hybrid failure model is utilised taking into account the stress field in the undamaged structure and the energy balance for the formation of cracks. Asymptotic formulations are compared to a direct numerical implementation. Experiments carried out on notched brittle specimens exhibiting various geometries and loading-modes are analysed by means of both approaches. Additionally, free-edge effects in composite laminates are analysed. It is found that the predictions from the model agree well with experimental results.
机译:在这项研究中,采用有限的断裂力学程序来预测脆性弹性结构在几何和材料间断处的裂纹形成。考虑到未损坏结构中的应力场和裂纹形成的能量平衡,采用了混合破坏模型。将渐近公式与直接数值实现进行比较。两种方法都对在具有各种几何形状和加载模式的带缺口易碎试样上进行的实验进行了分析。另外,分析了复合层压板中的自由边缘效应。发现该模型的预测与实验结果吻合良好。

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