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Dynamic propagation phenomena of multiple delaminations in composite structures

机译:复合结构中多个分层的动态传播现象

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摘要

A general model is proposed to predict dynamic propagation phenomena of interfacial cracks in laminated composite structures subjected to multiple delaminations. The model is based on a combined approach developed in the framework of Fracture Mechanics and moving mesh methodology. The former is utilized to predict the crack growth, whereas the latter defines the way to take into account the geometry changes on the basis of the invoked fracture parameters. Consistent with Fracture Mechanics, crack propagation depends on the energy release rate and its mode components, which are calculated by means of the decomposition methodology of the J-integral expression. The geometry variation, produced by the crack advance, is taken into account by means of a moving mesh strategy based on the Arbitrary Lagrangian–Eulerian (ALE) formulation. The crack tip motion is governed by prescribed speeds, which are expressed as function of a mixed mode crack criterion based on the energy release rate and its mode ratio. The coupling characters of the governing equations of the proposed model arising from the Fracture Mechanics and the moving mesh methodology are discussed. Comparisons with experimental results are reported to validate the proposed modeling. Moreover, a parametric study for single and multiple delamination problems, is developed to investigate some features regarding the crack tip behavior, such as dependence of the solution on the loading rates, the laminate geometry and the crack arrest phenomena.
机译:提出了一个通用模型来预测多层复合结构中层状复合结构界面裂纹的动态扩展现象。该模型基于在断裂力学和移动网格方法框架内开发的组合方法。前者用于预测裂纹扩展,而后者根据调用的断裂参数定义考虑几何形状变化的方式。与断裂力学一致,裂纹扩展取决于能量释放速率及其模式分量,该能量释放速率及其模式分量是通过J积分表达式的分解方法计算得出的。通过基于任意拉格朗日-欧拉(ALE)公式的移动网格策略,考虑了由裂纹扩展产生的几何形状变化。裂纹尖端的运动由规定的速度控制,该速度根据能量释放率及其模数比表示为混合模式裂纹判据的函数。讨论了由断裂力学和运动网格方法引起的模型控制方程的耦合特征。据报道与实验结果进行了比较,以验证所提出的模型。此外,针对单个和多个分层问题进行了参数研究,以研究有关裂纹尖端行为的某些特征,例如,溶液对加载速率的依赖,层压板的几何形状和裂纹阻止现象。

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