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Fatigue analysis of composite bonded repairs

机译:复合材料粘结修复的疲劳分析

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摘要

The present work intends to describe all procedures developed in order to predict the fatigue/fracture behaviour of single-strap repairs of carbon-epoxy composites. The main goal is to validate a mixed-mode I+II cohesive zone model for high-cycle fatigue based on the modified Paris law. A preliminary static fracture characterisation in mode I, mode II and mixed-mode I+II is necessary in order to achieve the static energetic criterion describing fracture of the bonded joint. Subsequently, the same tests were carried out under high-cycle fatigue loading in order to determine the evolution of the modified Paris law parameters as function of mode ratio. These fatigue/fracture characterisation tests were also used to validate the cohesive mixed-mode I+II zone model appropriate for high-cycle fatigue. The model was then used to predict fatigue life of the single-strap repairs and revealed good performance when compared with experimental results. Finally, the model was utilised to assess the influence of specimen geometry on the fatigue life of these structural repairs. It was concluded that such type of models can be considered appealing tools concerning the optimisation of repaired structures fatigue life.
机译:本工作旨在描述为预测碳-环氧树脂复合材料单带修复的疲劳/断裂行为而开发的所有程序。主要目标是验证基于修正的巴黎定律的高周疲劳混合模式 I+II 内聚区模型。为了达到描述粘结接头断裂的静态能量标准,有必要在模式 I、模式 II 和混合模式 I+II 中进行初步的静态断裂表征。随后,在高周疲劳载荷下进行了相同的测试,以确定修改后的巴黎定律参数随模式比的变化。这些疲劳/断裂特性测试还用于验证适用于高周疲劳的内聚混合模式 I+II 区模型。然后,该模型用于预测单带修复的疲劳寿命,并与实验结果相比显示出良好的性能。最后,利用该模型评估试样几何形状对这些结构修复疲劳寿命的影响。得出的结论是,这种类型的模型可以被认为是优化修复结构疲劳寿命的有吸引力的工具。

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