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Analytical study of piezoelectric paint sensor for acoustic emission-based fracture monitoring

机译:基于声发射的断裂监测的压电涂料传感器的分析研究

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Analytical study of piezoelectric paint, which provides insight about its key material behaviour in ultrasonic sensing, is the focus of this paper. Piezoelectric paint is a composite piezoelectric material that comprises tiny piezoelectric particles randomly dispersed within a polymer matrix phase. Acoustic emission (AE) technique has been used for non-destructive evaluation (NDE) such as fracture monitoring in metal, concrete and composite structures. The feasibility of using piezoelectric paint for AE sensing has been demonstrated. In the context of piezoelectric paint-based AE sensor, models for the key material properties of piezoelectric paint are reviewed first. The effect of piezoelectric ceramic volume fraction on paint sensor response is examined. A coupled field finite element model was established to carry out the electro-mechanical analysis of piezoelectric paint sensor subjected to AE excitation. The simulation model for piezoelectric paint sensor is calibrated with experimental data. While more extensive research needs to be done to characterize piezoelectric paint sensor for fracture monitoring, such an analytical study proves to be very useful to the optimization of piezoelectric paint formulation and sensor geometry for AE sensor.
机译:本文的重点是对压电涂料的分析研究,以了解其在超声传感中的关键材料行为。压电涂料是一种复合压电材料,包含无规分散在聚合物基质相中的微小压电颗粒。声发射(AE)技术已用于无损评估(NDE),例如金属,混凝土和复合结构中的断裂监测。已经证明了使用压电涂料进行AE传感的可行性。在基于压电涂料的AE传感器的背景下,首先回顾了压电涂料关键材料性能的模型。检查了压电陶瓷体积分数对涂料传感器响应的影响。建立了耦合场有限元模型,对压电涂料传感器进行AE激励进行了机电分析。利用实验数据对压电涂料传感器的仿真模型进行了校准。虽然需要进行更广泛的研究来表征用于裂缝监测的压电涂料传感器,但这种分析研究证明对于优化AE传感器的压电涂料配方和传感器几何形状非常有用。

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