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Progressive tensile damage simulation and strength analysis of three-dimensional braided composites based on three unit-cells models

机译:基于三个单元电池模型的三维编织复合材料的渐进拉伸损伤模拟及强度分析

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摘要

In order to explore the micro-failure mechanism and predict tensile strength of three-dimensional braided composites, the three unit-cells models, namely interior cell, surface cell and corner cell, are established to simulate progressive damage of these materials. Macro model is firstly created and divided into three kinds of unit cells by their periodical distributions. A criterion is approached to determine damage and its pattern of each element, and stiffness degradation is implemented for the damaged elements with geometric damage theory. Periodical boundary conditions are applied on the models to calculate micro-stress and damage propagation is simulated with the increase of load. Each type of damage and its percentage is obtained by simulation and micro-failure mechanism is analyzed. Furthermore, the tensile strengths are predicted from calculated stress-strain curves. From simulation, composites with large braiding angle have more complicated micro-failure mechanism than composites with small braiding angle. It is also observed that there are more damages in surface cell than in interior cell and the damage types in the surface cell are various. The predicted results on the three unit-cells models agree well with the experimental data and are more accurate than only using an interior-cell model.
机译:为了探索微型故障机理和预测三维编织复合材料的拉伸强度,建立了三个单元 - 细胞模型,即内部电池,表面电池和角电池,以模拟这些材料的渐进损伤。首先通过期间分布首先创建宏模型并分为三种单元电池。接近标准以确定每个元件的损坏及其图案,并且对于具有几何损伤理论的损坏元件来实现刚度劣化。在模型上应用期周期边界条件以计算微应力,并且随着负载的增加模拟了损坏传播。每种类型的损坏及其百分比是通过分析和微型故障机制获得的。此外,从计算的应力 - 应变曲线预测拉伸强度。从模拟中,具有大编织角度的复合材料具有比具有小编织角度小的复合材料更复杂的微型故障机构。还观察到,表面细胞的损伤比在内部电池中有更多的损伤,并且表面细胞中的损伤类型是各种各样的。三个单元电池模型的预测结果与实验数据很好,并且比使用内部单元模型更准确。

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