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Embedded Fibre Bragg Grating Sensor Response Model: Crack Growing Detection in Fibre Reinforced Plastic Materials

机译:嵌入式光纤布拉格光栅传感器响应模型:纤维增强塑料材料的裂纹扩展检测

摘要

This article presents a novel method to simulate the sensor output response of a Fibre Bragg Grating (FBG) sensor when embedded in a host material (Composite material or adhesive), during a crack growing/damage event. A finite element model of the crack growth mechanisms was developed, and different fracture modes were addressed. Then an output algorithm was developed to predict the sensor spectrum change during the different stages of the crack growing. Thus, it is possible to identify specific phenomenon that will only happen within the proximity of a crack, as compression field ahead the crack or non-uniform strain, and then identify the presence of such damage in the structure. Experimental tests were conducted in order to validate this concept and support the model. The FBG sensor response model was applied in a delamination of a Wind Turbine trailing edge, to demonstrate the applicability of this technique to more complicated structures, and to be used as a structural health monitoring design tool.
机译:本文提出了一种新颖的方法来模拟在裂纹扩展/损坏事件中嵌入到主体材料(复合材料或粘合剂)中的光纤布拉格光栅(FBG)传感器的传感器输出响应。建立了裂纹扩展机制的有限元模型,并探讨了不同的断裂模式。然后,开发了一种输出算法来预测裂纹扩展不同阶段的传感器光谱变化。因此,有可能识别出只会在裂纹附近发生的特定现象,如裂纹前的压缩场或不均匀应变,然后识别出这种损坏在结构中的存在。为了验证这个概念并支持模型,进行了实验测试。将FBG传感器响应模型应用于风力涡轮机后缘的分层中,以证明该技术对更复杂的结构的适用性,并用作结构健康监测设计工具。

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