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Mixed-mode delamination growth in carbon-fibre composite laminates under cyclic loading

机译:碳纤维复合材料层合板在循环载荷下的混合模式分层生长

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摘要

Delamination growth under fatigue loads in real composite components generally develops in a non-constant propagation mode. The aim of the investigation described in this article was to develop a model capable of predicting the fatigue delamination growth in a general case, under varying mode mix conditions. The crack growth development in essentially unidirectional laminates of carbon-fibre reinforced epoxy was analysed in terms of the Paris law for different constant propagation modes: mode I (double-cantilever beam test), mode II (end-notched flexure test) and different mixed-modes I/II (mixed-mode bending test). The dependence of the Paris law parameters oil mode mix is compared with the existing models in the literature. It is shown that these models do not reproduce the non-monotonic dependence on mode mix which has been observed in experimental data. Therefore, an improved phenomenological model is introduced and compared with the experimental data obtained by other researchers. To check the ability of the model to predict variable mixed-mode fatigue delamination, the mixed-mode end-loaded split test was employed and the experimental results were compared to the predictions of the model. The underlying mechanisms responsible for the dependency of the crack propagation rates on the degree of mode mix are also discussed on the basis of fractographic analysis. (C) 2004 Elsevier Ltd. All rights reserved.
机译:实际复合材料部件在疲劳载荷下的分层增长通常以非恒定传播模式发展。本文所述研究的目的是开发一种模型,该模型能够在各种模式混合条件下预测一般情况下的疲劳分层增长。根据巴黎定律,针对不同的恒定传播模式:模式I(双悬臂梁测试),模式II(端切口挠曲测试)和不同混合模式,分析了基本上单向的碳纤维增强环氧树脂层压板的裂纹扩展-模式I / II(混合模式弯曲测试)。将巴黎法律参数油模式混合的依赖性与文献中的现有模型进行了比较。结果表明,这些模型不能重现对模式混合的非单调依赖性,这在实验数据中已经观察到。因此,引入了改进的现象学模型并将其与其他研究人员获得的实验数据进行比较。为了检验模型预测可变的混合模式疲劳分层的能力,采用了混合模式端载荷分裂试验,并将实验结果与模型的预测结果进行了比较。在分形分析的基础上,还讨论了导致裂纹扩展速率与模式混合程度相关的潜在机理。 (C)2004 Elsevier Ltd.保留所有权利。

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