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Design and testing of integrated Bragg grating sensor systems for advanced grid structure

机译:高级网格结构集成布拉格光栅传感器系统的设计与测试

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In this research, the authors target on the construction of structural health monitoring system of Advanced Grid Structure (AGS) made of Carbon fiber reinforced plastic (CFRP). AGS has often been applied to aerospace structures because of the following advantages: (1) Since ribs carry only axial forces, the weakness in the transverse direction of the CFRP unidirectional laminates is negligible. (2) AGS has damage tolerance because the fracture of a rib hardly affects other ribs, namely AGS is a fail-safe structure. In this research, in order to detect existence and regions of rib fractures in AGS, we embedded multiplexed fiber Bragg grating (FBG) sensors into AGS in rib longitudinal directions for measurement of strains. Monitoring of the change in rib longitudinal strains is the most effective SHM system for AGS. In order to confirm our proposal, we carried out following discussions. First, we analytically revealed that the change in rib longitudinal strains was the most sensitive signal for damage detection because of AGS's structural redundancy. Then, we introduced a statistical outlier analysis technique into the SHM system for damage recognition. Finally, we established AGS with the SHM system and verified experimentally. The result of the test showed that damage existence and regions in AGS could be detected with the proposed SHM system.
机译:在本研究中,作者对碳纤维增强塑料(CFRP)制成的先进网格结构(AGS)结构健康监测系统的构建。由于以下优点:(1)由于肋条仅轴向轴力,因此CFRP单向层压板的横向横向的弱度可忽略不计。 (2)AGS具有损伤耐受性,因为肋骨的断裂几乎不影响其他肋骨,即AGS是一种故障安全结构。在该研究中,为了检测AGS中的肋骨骨折的存在和区域,我们将多路复用的光纤布拉格光栅(FBG)传感器嵌入到肋骨纵向方向上的AGS中,以测量菌株。监测肋骨纵向菌株的变化是AGS最有效的SHM系统。为了确认我们的提案,我们进行了以下讨论。首先,我们分析显示,由于AGS的结构冗余,肋骨纵向菌株的变化是最敏感的损坏信号。然后,我们向SHM系统推出了一个统计的异常分析技术以进行损坏识别。最后,我们与SHM系统建立了AGS并通过实验验证。测试结果表明,可以使用所提出的SHM系统检测到AGS中的损伤存在和区域。

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