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Buckling Behaviour of Carbon-Epoxy Adhesively-Bonded Scarf Repairs

机译:碳-环氧粘合围巾修复的屈曲行为

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摘要

The present work is dedicated to the experimental and numerical study of the buckling behaviour under pure compression of carbon-epoxy adhesively-bonded scarf repairs, with scarf angles varying from 2 to 45°. The experimental results were used to validate a numerical methodology using the Finite Element Method and a mixed-mode cohesive damage model implemented in the ABAQUS? software. The adhesive layer was simulated using cohesive elements with trapezoidal traction-separation laws in pure modes I and II to account for the ductility of the adhesive used. The cohesive laws in pure modes I and II were determined with Double Cantilever Beam and End-Notched Flexure tests, respectively, using an inverse method. Since in the experiments interlaminar and transverse intralaminar failures also occurred, cohesive laws to simulate these failure modes were also obtained experimentally following a similar procedure. Good correlations were found between the numerical predictions and experimental results for the elastic stiffness, maximum load and the corresponding displacement, plateau displacement and failure mode of the repairs.
机译:目前的工作致力于碳-环氧粘结的围巾修补物在纯压缩下的屈曲行为的实验和数值研究,围巾角度在2到45°之间变化。实验结果用于验证使用有限元方法和在ABAQUS中实施的混合模式内聚损伤模型的数值方法。软件。使用具有梯形牵引-分离定律的内聚元素在纯模式I和II中模拟粘合剂层,以说明所用粘合剂的延展性。使用反向方法分别通过双悬臂梁测试和端部切口挠曲测试确定纯模式I和II的内聚规律。由于在实验中还发生了层间和横向层内破坏,因此遵循类似的程序,也可以通过实验获得模拟这些破坏模式的内聚规律。在数值预测与实验结果之间发现了良好的相关性,即弹性刚度,最大载荷以及相应的位移,平台位移和修复的破坏模式。

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