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Fatigue monitoring of flax fibre reinforced epoxy composites using integrated fibre-optical FBG sensors

机译:使用集成光纤FBG传感器亚麻纤维增强环氧复合材料的疲劳监测

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We demonstrated the applicability of integrated Fibre Bragg Grating (FBG) sensors in the case of flax fabric reinforced epoxy matrix composites produced by resin transfer moulding (RTM). FBG sensors were integrated between the reinforcing layers of the composites. We verified the robustness of FBG-based strain measurement by comparing it to strain gauge strain measurement, optical fine strain measurement and deflection measurement from crosshead displacement during four-point flexural tests. After the extensive characterization of the static properties of the composite material, fatigue tests were performed in the same setup on the specimens with integrated FBG sensors. We demonstrated that with the integrated optical fibres, the cyclic creep strain of the composites could be monitored, which could be used as a criterion to predict the fatigue failure of the composites. The proposed technique can provide an effective and robust way for periodic condition monitoring of composite structures, especially in natural fibre reinforced composites, where creep is more pronounced than in the case of synthetic fibre reinforced composites.
机译:我们证明了通过树脂转移成型(RTM)产生的亚麻织物增强环氧基质复合材料的亚麻织物增强环氧基复合材料的整合光纤布拉格光栅(FBG)传感器的适用性。 FBG传感器集成在复合材料的加强层之间。我们通过将其与四点弯曲试验期间的十字头位移的应变计应变测量,光学精细应变测量和偏转测量进行比较,验证了基于FBG的应变测量的鲁棒性。在复合材料的静态性质的广泛表征之后,在具有集成FBG传感器的样本的同一设置中进行疲劳试验。我们证明,利用集成光纤,可以监测复合材料的环状蠕变应变,其可以用作预测复合材料的疲劳失效的标准。所提出的技术可以提供一种有效且坚固的方式,可用于周期性条件监测复合结构,特别是在天然纤维增强复合材料中,其中蠕变比在合成纤维增强复合材料的情况下更明显。

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