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Failure analysis of thin-walled composite structures using independent advanced damage models

机译:使用独立的高级损伤模型对薄壁复合结构的故障分析

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The aim of the study is to present a complex phenomenon of damage in thin-walled composite structures with an top-hat cross-section subjected to axial compression. Actual structures were prepared using the auto-clave technique (CFRP composite). Research was conducted in a full range of load ? until construction damage. In the case of experimental testing both post-critical equilibrium paths and acoustic emission signals were recorded. Numerical simulations were realised using progressive fracture analysis (PFA) and cohesive zone model (CZM). Such approach allowed one to assess the loss of load capacity along with demonstrating the delamination phenomenon. A measurable effect of the experimental-numerical research was presenting the influence of axial compression on post-critical behaviour of the structure and damage phases.
机译:该研究的目的是在具有轴向压缩的顶帽横截面上呈现薄壁复合结构损伤的复杂现象。 使用自动分层技术(CFRP复合材料)制备实际结构。 在全方位的负载中进行了研究? 直到施工损坏。 在记录临界后的平衡路径和声发射信号的实验测试的情况下。 使用渐进式断裂分析(PFA)和粘性区域模型(CZM)实现了数值模拟。 这种方法允许人们评估负载能力的损失以及展示分层现象。 实验数值研究的可测量效果呈轴向压缩对结构和损伤阶段的关键性行为的影响。

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