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Distributed Strain Monitoring for Damage Evolution in CFRP Bolted Structures with Embedded Optical Fibers

机译:嵌入式光纤中CFRP螺栓结构损伤演化的分布式应变监测

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The authors proposed fiber-optic-based damage monitoring of carbon fiber reinforced plastic (CFRP) bolted joints. Optical fibers were embedded along bolt holes and strain change along the optical fiber induced by internal damage was measured by a Brillouin Optical Correlation Domain Analysis (BOCDA), which is a high spatial resolution distributed strain sensing system. This study began by investigating damage modes of CFRP bolted joints after bearing failure. Effective embedding positions of optical fibers were then proposed and their feasibility was evaluated by finite element analysis simulating the damage propagation in the bolted joint and consequent strain change. Finally, verification tests were conducted using specimens with embedded optical fibers at various positions. It was clearly shown that damage could be detected using residual strain due to fiber-microbuckling (kinking) damage or permanent deformation of neighboring plies. Furthermore, damage size and direction could be estimated from the change in the strain distribution. The system developed is quite useful for a first inspection of large-scale composite structures in aerospace applications.
机译:作者提出了碳纤维增强塑料(CFRP)螺栓接头的纤维光学损伤监测。沿着螺栓孔嵌入光纤,通过布里渊光学相关域分析(BOCDA)测量沿着内部损坏引起的光纤的应变变化,这是一种高空间分辨率分布式应变传感系统。本研究开始通过研究轴承失效后CFRP螺栓接头的损伤模式。然后提出了通过有限元分析来评估光纤的有效嵌入位置,并通过有限元分析来评估螺栓接头中的损坏传播和随后的应变变化进行了评估。最后,使用各种位置的嵌入式光纤进行验证试验。清楚地表明,由于纤维微磁带(扭结)损坏或相邻层的永久变形,可以使用残留菌株检测损坏。此外,可以从应变分布的变化估计损伤尺寸和方向。系统开发的系统对于第一次检查航空航天应用中的大规模复合结构的检查非常有用。

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