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Effective elastic properties of layered composites considering non-uniform imperfect adhesion

机译:考虑不均匀不完美粘合的层状复合材料的有效弹性性能

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In this study, the effective elastic properties of layered composites are predicted by considering the influence of non-uniform imperfect adhesion. In practical terms, the influence of non-uniform imperfection on the effective properties of layers is evaluated when debonding or delamination occurs between adjacent layers. Thus, the effective properties of two- and three-layer composites with imperfect and perfect interfaces are calculated using the finite element method and an analytical technique based on the two-scale asymptotic homogenization method, respectively. In the analyses, it was used a two-layer model with imperfect interface conditions and a three-layer model with perfect conditions to derive analytical expressions of the interlayer properties, which are equivalent to the effect of the imperfection (e.g., debonding). Our numerical results demonstrate that the three-layer model provides an excellent approximation of the two-layer one and it illustrates how the effective properties of the layered composites made from titanium Ti6Al4V and ceramic AD-96 are affected by non-uniform imperfect adhesion.
机译:在这项研究中,层状复合材料的有效弹性性能是通过考虑非均匀不完全粘合的影响来预测的。实际上,当在相邻层之间发生粘结或分层时,评估不均匀缺陷对层的有效性能的影响。因此,分别使用有限元法和基于两尺度渐近均质化方法的分析技术分别计算了具有不完美界面和完美界面的两层和三层复合材料的有效性能。在分析中,使用具有不完美界面条件的两层模型和具有完美条件的三层模型来导出层间特性的分析表达式,这些表达式等效于不完美的影响(例如,脱胶)。我们的数值结果表明,三层模型可以很好地逼近两层模型,它说明了由钛Ti6Al4V和陶瓷AD-96制成的层状复合材料的有效性能如何受到不均匀的不完美粘合的影响。

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