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Monitoring and characterization of the interfacial fracture in sandwich composites with embedded multiplexed optical sensors

机译:嵌入式复合光学传感器对夹芯复合材料界面断裂的监测和表征

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Interfacial debonding is one of the most critical damage modes that threatens the structural performance of sandwich composites. In this work, integrated multiplexed fiber Bragg grating (FBG) sensors of 1 mm gauge length are used for detection and characterization of crack propagation along the face-core interface. Single cantilever beam specimens incorporating arrays of FBG sensors are subjected to monotonic and fatigue debonding tests. The experimental configurations are simulated by finite element method in order to verify the experimental procedures and analyze the strain data corresponding to the location of the embedded FBGs. It is demonstrated that the embedded FBGs can successfully reveal the strain field imposed by the interface crack into the sandwich face. The good agreement between the experimental results and concurrent numerical simulations suggests that such data can be used for monitoring of interfacial fatigue and fracture in sandwich structures.
机译:界面剥离是威胁夹心复合材料结构性能的最关键的破坏方式之一。在这项工作中,使用集成的长度为1 mm的多路光纤布拉格光栅(FBG)传感器来检测和表征沿面芯界面的裂纹扩展。装有FBG传感器阵列的单悬臂梁样品要经过单调和疲劳剥离测试。为了验证实验程序并分析与嵌入式FBG位置相对应的应变数据,通过有限元方法对实验配置进行了模拟。结果表明,嵌入的光纤光栅可以成功地揭示出界面裂纹对夹心面施加的应变场。实验结果与并行数值模拟之间的良好一致性表明,此类数据可用于监测夹心结构的界面疲劳和断裂。

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