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首页> 外文期刊>Sensors >Detection, Localization and Quantification of Impact Events on a Stiffened Composite Panel with Embedded Fiber Bragg Grating Sensor Networks
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Detection, Localization and Quantification of Impact Events on a Stiffened Composite Panel with Embedded Fiber Bragg Grating Sensor Networks

机译:带有嵌入式光纤布拉格光栅传感器网络的加硬复合板上冲击事件的检测,定位和量化

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摘要

Nowadays, it is possible to manufacture smart composite materials with embedded fiber optic sensors. These sensors can be exploited during the composites’ operating life to identify occurring damages such as delaminations. For composite materials adopted in the aviation and wind energy sector, delaminations are most often caused by impacts with external objects. The detection, localization and quantification of such impacts are therefore crucial for the prevention of catastrophic events. In this paper, we demonstrate the feasibility to perform impact identification in smart composite structures with embedded fiber optic sensors. For our analyses, we manufactured a carbon fiber reinforced plate in which we embedded a distributed network of fiber Bragg grating (FBG) sensors. We impacted the plate with a modal hammer and we identified the impacts by processing the FBG data with an improved fast phase correlation (FPC) algorithm in combination with a variable selective least squares (VS-LS) inverse solver approach. A total of 164 impacts distributed on 41 possible impact locations were analyzed. We compared our methodology with the traditional P-Inv based approach. In terms of impact localization, our methodology performed better in 70.7% of the cases. An improvement on the impact time domain reconstruction was achieved in 95 . 1 % of the cases.
机译:如今,可以使用嵌入式光纤传感器制造智能复合材料。这些传感器可在复合材料的使用寿命期间加以利用,以识别发生的损坏(例如分层)。对于航空和风能领域采用的复合材料,分层通常是由外部物体的撞击引起的。因此,对此类影响的检测,定位和量化对于预防灾难性事件至关重要。在本文中,我们演示了在具有嵌入式光纤传感器的智能复合结构中执行碰撞识别的可行性。为了进行分析,我们制造了一个碳纤维增强板,其中嵌入了光纤布拉格光栅(FBG)传感器的分布式网络。我们用模态锤冲击板,并通过结合改进的快速相位相关(FPC)算法和可变选择性最小二乘(VS-LS)逆求解器方法处理FBG数据来确定影响。分析了分布在41个可能影响位置上的164个影响。我们将我们的方法与传统的基于P-Inv的方法进行了比较。在影响定位方面,我们的方法在70.7%的案例中表现更好。在95年实现了对冲击时域重构的改进。 1%的情况。

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