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Prediction of delamination migration at a 0°/θ ply interface in composite tape laminates

机译:预测复合带层压板在0°/θ层界面处的分层迁移

摘要

Delamination in composite laminates can migrate through the thickness, from one interface to another. The “Delamination Migration” test method allows a detailed observation of migration, and the evaluation of the parameters affecting it. Delamination migration tests conducted on specimens containing a 0°/θ interface demonstrated that migration is governed by the sign of the component of interlaminar shear stress perpendicular to the θ fiber direction, τ23. At a 0°/θ interface, when the shear stress sign is favorable for migration, delamination tends to propagate along the θ fiber direction, before migrating through the θ-oriented ply. The conditions at the 0°/θ interface, which determine either delamination growth along the θ fiber direction or migration, were evaluated using the Virtual Crack Closure Technique (VCCT). The strain energy release rates in the direction of the fibers, Gf, and perpendicular to the fibers, Gm, were calculated, along with the total strain energy release rate, GT. The components Gf and Gm were then used with the shear stress sign, to account for the effect of both parameters on delamination growth and migration. Correlation with experimental results for 0°/60° delamination migration specimens showed that if the sign of τ23 is favorable for migration but Gf/GT is greater than Gm/GT, delamination tends to propagate along the θ fiber direction and migration will not occur. Delamination can migrate only if Gf/GT is less than Gm/GT. This method improves the prediction of migration in the delamination migration specimen, compared to the analysis using the shear stress sign only.
机译:复合材料层压板中的分层可能会从一个界面迁移到另一个界面,并贯穿整个厚度。 “分层迁移”测试方法允许对迁移进行详细观察,并评估影响迁移的参数。在包含0°/θ界面的样品上进行的分层迁移测试表明,迁移受垂直于θ纤维方向τ23的层间剪切应力分量的符号控制。在0°/θ界面处,当剪切应力符号有利于迁移时,在迁移通过θ定向层之前,分层倾向于沿θ纤维方向传播。使用虚拟裂纹闭合技术(VCCT)评估了0°/θ界面处的条件,这些条件决定了沿θ纤维方向的分层增长或迁移。计算了沿纤维方向Gf和垂直于纤维Gm的应变能释放率,以及总应变能释放率GT。然后将Gf和Gm分量与剪切应力符号一起使用,以说明这两个参数对分层生长和迁移的影响。与0°/ 60°分层迁移样本的实验结果相关性表明,如果τ23的符号有利于迁移,但Gf / GT大于Gm / GT,则分层倾向于沿θ纤维方向传播,并且不会发生迁移。仅当Gf / GT小于Gm / GT时,分层才能迁移。与仅使用剪应力符号的分析相比,此方法改进了分层迁移样品中迁移的预测。

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