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A Novel Embeddable Tubular Piezoceramics-Based Smart Aggregate for Damage Detection in Two-Dimensional Concrete Structures

机译:一种新型的可嵌入的基于管状压电陶瓷的智能骨料用于二维混凝土结构的损伤检测

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摘要

Due to their multiple advantages, piezoceramic materials have been widely used in structural health monitoring (SHM). Piezoceramic patch-based smart aggregate (SA) and spherical piezoceramic-based smart aggregate (SSA) have been developed for damage detection of concrete structures. However, the stress waves generated by these two types of transducers are limited by their geometry and are unsuitable for use in two-dimensional concrete structures (e.g., shear walls, floors and cement concrete pavements). In this paper, a novel embeddable tubular smart aggregate (TSA) based on a piezoceramic tube was designed, fabricated and tested for use in two-dimensional (2D) structures. Due to its special geometry, radially uniform stress waves can be generated, and thus the TSA is suitable for damage detection in planar structures. The suitability of the transducer for use in structural health monitoring was investigated by characterizing the ability of the transducer to transmit and measure stress waves. Three experiments, including impedance analysis, time of arrival analysis and sweep frequency analysis, were conducted to test the proposed TSA. The experimental results show that the proposed TSA is suitable for monitoring the health condition of two-dimensional concrete structures.
机译:由于其多种优点,压电陶瓷材料已广泛用于结构健康监测(SHM)。基于压电陶瓷贴片的智能骨料(SA)和基于球形压电陶瓷的智能骨料(SSA)已开发用于混凝土结构的损伤检测。但是,由这两种类型的传感器产生的应力波受到它们的几何形状的限制,并且不适用于二维混凝土结构(例如,剪力墙,地板和水泥混凝土路面)。在本文中,设计,制造并测试了一种基于压电陶瓷管的新型可嵌入管状智能骨料(TSA),用于二维(2D)结构。由于其特殊的几何形状,可以产生径向均匀的应力波,因此,TSA适用于平面结构中的损伤检测。通过表征传感器传输和测量应力波的能力,研究了传感器在结构健康监测中的适用性。进行了三个实验,包括阻抗分析,到达时间分析和扫频分析,以测试所提出的TSA。实验结果表明,所提出的TSA适用于监测二维混凝土结构的健康状况。

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