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Fracture mechanics-based progressive damage modelling of adhesively bonded fibre-reinforced polymer joints

机译:基于断裂力学的纤维增强聚合物接头的渐进损伤建模

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摘要

A quasi-static progressive damage model for prediction of the fracture behaviour and strength of adhesively bonded fibre-reinforced polymer joints is introduced in this paper. The model is based on the development of a mixed-mode failure criterion as a function of a master R-curve derived from the experimental results obtained from standard fracture mechanics joints. Consequently, the developed failure criterion is crack-length and mode-mixity dependent, and it takes into account the contribution of the fibre-bridging effect. Energy release rate values for adhesively bonded double-lap joints are obtained by using the virtual crack closure technique method in a finite element model, and the numerically obtained strain energy release rate is compared to the critical strain energy release rate given by the mixed-mode failure criterion. The entire procedure is implemented in a numerical algorithm, which was successfully used for predicting the strength and R-curve response of adhesively bonded double-lap structural joints made of pultruded glass fibre-reinforced polymers and epoxy adhesives.
机译:介绍了一种准静态渐进损伤模型,用于预测粘合纤维增强聚合物接头的断裂行为和强度。该模型基于根据标准R形力学接头获得的实验结果得出的,基于主R曲线的混合模式失效准则的发展。因此,发展的破坏准则取决于裂纹长度和模式混合,并且考虑到了光纤桥接效应的贡献。通过在有限元模型中使用虚拟裂纹闭合技术方法获得粘合双搭接接头的能量释放速率值,并将数值获得的应变能量释放速率与混合模式给出的临界应变能量释放速率进行比较破坏准则。整个过程以数值算法实现,该算法已成功用于预测由拉挤玻璃纤维增​​强的聚合物和环氧胶粘剂制成的胶粘双搭接结构接头的强度和R曲线响应。

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