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Finite element analysis of a repaired thin-walled aluminum tube containing a longitudinal crack with composite patches under internal dynamic loading

机译:内部动态载荷下带有复合材料贴片的纵向裂纹的修复薄壁铝管的有限元分析

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AbstractOne of the main issues with the cylindrical tubes is the propagation of cracks during their operational life wherein most of the cracks happen along the axial direction of the tube. This paper reports a 3D finite element simulation of the mechanical responses of an aluminum tube containing a longitudinal crack repaired with composite patches. After several loading-unloading cycles of the dynamic load, mechanical stresses at the crack tips may result in unstable crack propagation. Therefore, it is necessary to use a repair process to prevent the structure from final rupture. Glass/epoxy and boron/epoxy composite patches, with different number of patch layers, are considered in the analysis of the composite material repair effect on the crack tips stress distribution, evaluating the possibilities of crack propagation and patch delamination onset. Numerical simulations were partially compared with literature results to verify the modeling procedure, while a parametric study on the patch thickness was performed to verify the repair effectiveness. In general, boron and longer (140 mm) repair patches presented better performance than glass and shorter (70 mm) patches. Although thinner patches (2 layers) do not present the required resistance, thicker patches (16 layers) may precipitate delamination onset and thus should be avoided.
机译: 摘要 圆柱管的主要问题之一是裂纹在其使用寿命期间的传播,其中大部分裂纹沿轴向发生管的。本文报道了铝管的机械响应的3D有限元模拟,该铝管包含用复合材料修补剂修复的纵向裂纹。在动态载荷的几次加载-卸载循环之后,裂纹尖端的机械应力可能会导致裂纹扩展不稳定。因此,有必要使用修复过程以防止结构最终破裂。在分析复合材料对裂纹尖端应力分布的修复效果的分析中,考虑了具有不同数量补丁层的玻璃/环氧树脂和硼/环氧树脂复合补丁,评估了裂纹扩展和补丁分层开始的可能性。将数值模拟与文献结果进行了部分比较,以验证建模过程,同时对贴剂厚度进行了参数研究,以验证修复效果。通常,硼和更长(140 mm)的修补片比玻璃和短(70 mm)的修补片具有更好的性能。尽管较薄的贴片(2层)不能提供所需的电阻,但是较厚的贴片(16层)可能会导致分层开始,因此应避免使用。

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