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Application of embedded fibre Bragg grating sensors for structural health monitoring of complex composite structures for marine applications

机译:嵌入式光纤布拉格光栅传感器在船舶应用中复合复合结构的结构健康监测

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Fibre reinforced polymer (FRP) materials are recently widely applied in the marine industry. The high popularity of composites and safety requirements results in the development of Structural Health Monitoring (SHM) systems. One of the sensors types that can be permanently integrated with a composite structure and used as a part of SHM system are fibre Bragg grating (FBG) sensors. Among FBG sensors advantages small size, high corrosion resistance, and absence of electric current are especially important in monitoring of composite marine structures.The paper presents an application of embedded FBG sensors arrays for evaluation of complex composite structure - a fast patrol boat. The experimental investigations contain spectra analyses for thin laminate sample (skin), a composite sandwich panel and fast patrol boat hull (sandwich structure). The quality of sensors spectra (before/after embedding and loading) was determined using the Pearson correlation coefficient. The relationship between strain and temperature in exploitation range was determined for laminate and sandwich structures. A linear relationship was achieved for both elements. The relationship for the sandwich panel was then applied during strain analyses of the boat composite hull. The utility of designed FBG sensors array for the panel was also verified by sensors responses on impact excitation in chosen points on the structure. The achieved results were then used during designing FBG sensors array embedded into the hull. FBG sensors spectra deformations due to fast patrol boat hull manufacturing process and exploitation as well as strain curves determined for the boat during tests at dry dock and at sea trials are analysed.
机译:最近在海洋工业中广泛应用纤维增强聚合物(FRP)材料。复合材料和安全要求的高普及导致结构健康监测(SHM)系统的开发。可以永久地与复合结构永久集成的传感器类型之一,并用作SHM系统的一部分是光纤布拉格光栅(FBG)传感器。在FBG传感器中,优点小尺寸,高耐腐蚀性和电流的不存在在对复合船舶结构的监测方面尤为重要。本文介绍了嵌入式FBG传感器阵列的应用,用于评估复合复合结构 - 快速巡逻艇。实验研究含有光谱分析,用于薄层压制样品(皮肤),复合三明治面板和快速巡逻艇船体(夹心结构)。使用Pearson相关系数测定传感器光谱的质量(嵌入和装载之前/装载)。测定剥削范围之间应变和温度之间的关系,用于层压板和夹层结构。为两个元素实现了线性关系。然后在船复合壳体的应变分析期间施加夹层板的关系。通过传感器对结构的冲击激发的反应,还通过开关响应验证了面板设计的FBG传感器阵列的效用。然后在设计嵌入船体中的FBG传感器阵列期间使用实现的结果。 FBG传感器由于快速巡逻艇船体制造工艺和开发和剥离以及在干坞测试期间确定的船舶的应变曲线引起的谱变形以及在干码头和海上试验期间测定的应变曲线。

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