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Structural Durability of Damaged Metallic Panel Repaired with Composite Patches

机译:复合修补剂修复受损金属面板的结构耐久性

摘要

Structural durability/damage tolerance characteristics of an aluminum tension specimen possessing a short crack and repaired by applying a fiber composite surface patch is investigated via computational simulation. The composite patch is made of graphite/epoxy plies with various layups. An integrated computer code that accounts for all possible failure modes is utilized for the simulation of combined fiber-composite/aluminum structural degradation under loading. Damage initiation, growth, accumulation, and propagation to structural fracture are included in the simulation. Results show the structural degradation stages due to tensile loading and illustrate the use of computational simulation for the investigation of a composite patch repaired cracked metallic panel.
机译:通过计算仿真研究了具有短裂纹并通过应用纤维复合材料表面修补剂修复的铝拉伸试样的结构耐久性/损伤耐受特性。复合贴片由具有各种叠层的石墨/环氧树脂层制成。考虑了所有可能的失效模式的集成计算机代码用于模拟载荷作用下纤维复合材料/铝结构的组合退化。模拟中包括损伤的引发,增长,累积和传播至结构性断裂。结果显示了由于拉伸载荷而导致的结构退化阶段,并说明了使用计算模拟研究复合补丁修复的破裂金属面板。

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