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Investigation of exact analytical solutions for composite laminates under pin-bearing loading

机译:销轴承载荷下复合材料层合板精确解析解的研究

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摘要

A number of analytical, experimental as well as numerical methods are available for designing mechanically fastened composite joints. In the present paper, exact analytical solutions previously introduced in literature for the case of a pin-loaded composite laminate are investigated. Experimental testing in a single-lap pin-bearing setup accompanied by digital image correlation of quasi-isotropic and highly-orthotropic CFRP laminates is conducted. Additionally, 3D finite element modeling is performed for detailed analysis of the test specimens on lamina level. Within a preliminary study, it is concluded that application of either of the analytical solutions leads to quantitative as well as qualitative differences in the resulting stress fields, thus, indicating that the choice of model is critical for subsequent failure analysis. Qualitative as well as quantitative comparisons of 2D strain fields on laminate level confirm the high prediction quality of certain analytical solutions. However, there are analytical solutions, some of which are implemented in commercial composite design software, that exhibit significant deviations from experimental and numerical data. These observations are further extended by detailed stress analysis down to lamina level. The results show that certain exact analytical solutions exhibit very good stress prediction qualities for w/d ratios as low as 3 and thus can be recommended for preliminary design purposes.
机译:许多分析、实验和数值方法可用于设计机械紧固的复合材料接头。本文研究了先前在文献中介绍的销钉式复合材料层压板的确切解析解。在单搭接销轴承设置中进行实验测试,并伴有准各向同性和高正交各向异性CFRP层压板的数字图像相关性。此外,还执行 3D 有限元建模,以在层级上对试样进行详细分析。在初步研究中,得出的结论是,应用任何一种解析解决方案都会导致所产生应力场的定量和定性差异,因此,表明模型的选择对于后续的失效分析至关重要。层压板水平上二维应变场的定性和定量比较证实了某些分析解的高预测质量。然而,有一些分析解决方案,其中一些是在商业复合材料设计软件中实现的,它们表现出与实验和数值数据的显着偏差。通过详细的应力分析,这些观察结果进一步扩展到层层水平。结果表明,某些精确的解析解在w/d比低至3时表现出非常好的应力预测质量,因此可以推荐用于初步设计目的。

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