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Prediction of crack initiation and propagation of adhesive lap joints using an energy failure criterion

机译:使用能量失效准则预测搭接接头的裂纹萌生和扩展

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摘要

In a previous paper, the present authors have pointed out limitations of some fracture mechanics parameters and shown that the vectorial J-integral can be applied to adhesive joints. Here, problems concerning the practical application of the vectorial J-integral are discussed and a more suitable failure criterion has been proposed, based on a specific strain energy criterion. The specific energy is not so sensitive to the size of the integration zone since it is 'averaged' over the volume of the zone. This criterion has been used to model the crack initiation and propagation in single lap joints with a brittle adhesive and a ductile adhesive. The effect of the shrinkage thermal stresses, adhesive fillet, surface preparation and type of adherends (aluminium and steel) were studied. The predicted failure loads and crack patterns are in very good agreement with the experimental results. One of the major conclusions is that the predictions can explain well the experimental scatter band that is always present in single lap joints due to the difficulty of controlling the adhesive fillet.
机译:在先前的论文中,作者指出了某些断裂力学参数的局限性,并表明矢量J积分可应用于粘合接头。在此,讨论了与矢量J积分的实际应用有关的问题,并基于特定的应变能准则,提出了更合适的失效准则。比能量对积分区的大小不太敏感,因为它是在积分区的体积上“平均”的。该标准已被用来模拟脆性粘合剂和韧性粘合剂在单搭接缝中的裂纹萌生和扩展。研究了收缩热应力,胶角,表面处理和被粘物类型(铝和钢)的影响。预测的破坏载荷和裂纹模式与实验结果非常吻合。主要结论之一是,这些预测可以很好地解释由于难以控制粘合剂圆角而始终存在于单搭接接头中的实验性散射带。

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