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Comparison of 2D Finite Element Modeling Assumptions with Results From 3D Analysis for Composite Skin-Stiffener Debonding

机译:2D有限元建模假设与3D分析结果的复合蒙皮加劲层剥离的比较

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摘要

The influence of two-dimensional finite element modeling assumptions on the debonding prediction for skin-stiffener specimens was investigated. Geometrically nonlinear finite element analyses using two-dimensional plane-stress and plane-strain elements as well as three different generalized plane strain type approaches were performed. The computed skin and flange strains, transverse tensile stresses and energy release rates were compared to results obtained from three-dimensional simulations. The study showed that for strains and energy release rate computations the generalized plane strain assumptions yielded results closest to the full three-dimensional analysis. For computed transverse tensile stresses the plane stress assumption gave the best agreement. Based on this study it is recommended that results from plane stress and plane strain models be used as upper and lower bounds. The results from generalized plane strain models fall between the results obtained from plane stress and plane strain models. Two-dimensional models may also be used to qualitatively evaluate the stress distribution in a ply and the variation of energy release rates and mixed mode ratios with delamination length. For more accurate predictions, however, a three-dimensional analysis is required.
机译:研究了二维有限元建模假设对蒙皮加筋试样脱粘预测的影响。使用二维平面应力和平面应变单元以及三种不同的广义平面应变类型方法进行了几何非线性有限元分析。将计算出的蒙皮和翼缘应变,横向拉伸应力和能量释放速率与三维模拟获得的结果进行比较。研究表明,对于应变和能量释放率计算,广义平面应变假设得出的结果最接近完整的三维分析。对于计算的横向拉伸应力,平面应力假设给出了最佳的一致性。基于此研究,建议将平面应力和平面应变模型的结果用作上限和下限。广义平面应变模型的结果介于平面应力模型和平面应变模型的结果之间。二维模型也可用于定性地评估板层中的应力分布以及能量释放速率和混合模式比率随分层长度的变化。但是,为了进行更准确的预测,需要进行三维分析。

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