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首页> 外文期刊>Engineering Fracture Mechanics >A procedure for the simulation of fatigue crack growth in adhesively bonded joints based on a cohesive zone model and various mixed-mode propagation criteria
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A procedure for the simulation of fatigue crack growth in adhesively bonded joints based on a cohesive zone model and various mixed-mode propagation criteria

机译:基于内聚区模型和各种混合模式传播准则的胶接接头疲劳裂纹扩展模拟程序

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摘要

This work deals with the simulation of fatigue crack growth (FCG) in bonded joints. In particular a cohesive damage model is implemented using the commercial software Abaqus, in order to take into account the damage produced by fatigue loading. The model is two dimensional and it is assumed that crack growth is confined to a straight bond line. The crack growth rate is evaluated using Paris-like power law expressed in terms of strain energy release rate. The crack growth rate is then transformed into variation of the damage distribution over the cohesive zone, leading to an equivalence between an increment of crack length and an increment of damage. The model also takes into account mixed-mode I/1I loading conditions. In this work the validity of the model is tested by comparison with theoretical trends for conditions of pure mode I, pure mode II and mixed-mode loading. In the case of mixed-mode conditions, three models are implemented for the crack growth rate computation. The results of the models are in very good agreement with expected trends, therefore the model is adequate to simulate fatigue crack growth behaviour of bonded joint.
机译:这项工作涉及粘合接头疲劳裂纹扩展(FCG)的模拟。特别是使用商业软件Abaqus实施内聚损伤模型,以便考虑疲劳载荷产生的损伤。该模型是二维的,并且假定裂纹扩展被限制在一条直线上。使用以应变能释放速率表示的类似于巴黎的幂定律评估裂纹的扩展速率。然后,将裂纹扩展速率转换为粘结区域上损伤分布的变化,从而导致裂纹长度增加与损伤增加之间的等价性。该模型还考虑了混合模式I / 1I加载条件。在这项工作中,通过与纯模式I,纯模式II和混合模式加载条件下的理论趋势进行比较,测试了模型的有效性。在混合模式条件下,为裂纹扩展率计算实现了三个模型。模型的结果与预期趋势非常吻合,因此该模型足以模拟粘结接头的疲劳裂纹扩展行为。

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