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Continuum Damage Mechanics Models for the Analysis of Progressive Failure in Open-Hole Tension Laminates

机译:开孔张力层合板渐进破坏分析的连续损伤力学模型

摘要

The performance of a state-of-the-art continuum damage mechanics model for interlaminar damage, coupled with a cohesive zone model for delamination is examined for failure prediction of quasi-isotropic open-hole tension laminates. Limitations of continuum representations of intra-ply damage and the effect of mesh orientation on the analysis predictions are discussed. It is shown that accurate prediction of matrix crack paths and stress redistribution after cracking requires a mesh aligned with the fiber orientation. Based on these results, an aligned mesh is proposed for analysis of the open-hole tension specimens consisting of different meshes within the individual plies, such that the element edges are aligned with the ply fiber direction. The modeling approach is assessed by comparison of analysis predictions to experimental data for specimen configurations in which failure is dominated by complex interactions between matrix cracks and delaminations. It is shown that the different failure mechanisms observed in the tests are well predicted. In addition, the modeling approach is demonstrated to predict proper trends in the effect of scaling on strength and failure mechanisms of quasi-isotropic open-hole tension laminates.
机译:研究了用于层间损伤的最新连续损伤力学模型以及用于分层的内聚区模型的性能,以预测准各向同性裸眼张拉层合物的破坏。讨论了层内损伤的连续表示形式的局限性以及网格方向对分析预测的影响。结果表明,要准确预测基体开裂路径和开裂后应力的重新分布,需要一个与纤维取向一致的网格。基于这些结果,提出了一种对齐的网格,用于分析由各个层中的不同网格组成的裸眼张力样本,从而使单元边缘与层的纤维方向对齐。通过将分析预测结果与样本配置的实验数据进行比较来评估建模方法,在样本配置中,破坏主要由基体裂纹和分层之间的复杂相互作用决定。结果表明,在测试中观察到的不同故障机制得到了很好的预测。此外,还证明了该建模方法可以预测结垢对准各向同性裸眼张力层压板强度和破坏机理的影响的适当趋势。

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