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Filament wound composite fatigue mechanisms investigated with full field DIC strain monitoring

机译:具有全田DIC应变监测研究的细丝缠绕复合疲劳机制

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Fatigue of filament wound materials was investigated using Digital Image Correlation DIC monitoring every 50th?cycle of a high cycle fatigue test of a split disk ring sample. The ring was cut from a filament wound glass fiber reinforced polymer pressure vessel and had a hole. The strain field redistributed over time, lowering and moving strain concentrations. The redistributive behavior was most extensive in areas that later developed local fiber failure, which soon led to catastrophic failure. Microscopy was carried out on partially fatigued material. Damage evolved as matrix cracks and matrix splitting of groups of fibers and complete debonding of single fibers. This occurred at borders of voids and matrix cracks, easing progressive fiber failure. It was concluded that fatigue in filament wound composites has an extensive matrix damage phase before final failure. Fibers could locally withstand strains close to and above the static failure strain for considerable number of cycles if little local strain field redistribution was observed. The used method was able to detect changes in the strain fields that preceded catastrophic failure. It was concluded that DIC combined with the post processing methods presented may serve as a valuable tool for structural integrity monitoring of composite pressure vessels over time.
机译:使用数字图像相关DIC监测来研究灯丝缠绕材料的疲劳,每50次进行分裂盘样品的高循环疲劳试验的循环。从长丝缠绕玻璃纤维增​​强聚合物压力容器中切割环并具有孔。应变场随时间重新分配,降低和移动应变浓度。再分配行为在后来开发了局部纤维失效的区域中最广泛,这很快就会导致灾难性失败。在部分疲劳的材料上进行显微镜检查。损伤发展为纤维组的基质裂缝和基质分裂,并完成单纤维的完全剥离。这发生在空隙和矩阵裂缝的边界中,缓解渐进式纤维失败。得出结论,长丝缠绕复合材料的疲劳在最终失效前具有广泛的基质损伤阶段。如果观察到很少的局部应变场再分配,纤维可以局部承受靠近和高于静态失效应变的菌株,如果观察到局部应变场再分配。使用的方法能够检测灾难性故障的应变场的变化。结论是,DIC与所提出的后处理方法相结合可用作复合压力容器随着时间的推移结构完整性监测的有价值的工具。

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