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Detecting of the Crack and Leakage in the Joint of Precast Concrete Segmental Bridge Using Piezoceramic Based Smart Aggregate

机译:基于压电母智能聚集体的预制混凝土节段桥梁裂缝和泄漏检测

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摘要

Precast concrete segmental bridges (PCSBs) have been widely used in bridge engineering due to their numerous competitive advantages. The structural behavior and health status of PCSBs largely depend on the performance of the joint between the assembled segments. However, due to construction errors and dynamic loading conditions, some cracks and leakages have been found at the epoxy joints of PCSBs during the construction or operation stage. These defects will affect the joint quality, negatively impacting the safety and durability of the bridge. A structural health monitoring (SHM) method using active sensing with a piezoceramic-based smart aggregate (SA) to detect the crack and leakage in the epoxy joint of PCSBs was proposed and the feasibility was studied by experiment in the present work. Two concrete prisms were prefabricated with installed SAs and assembled with epoxy joint. An initial defect was simulated by leaving a 3-cm crack at the center of the joint without epoxy. With a total of 13 test cases and the different lengths of cracks without water and filled with water were simulated and tested. Time-domain analysis, frequency-domain analysis and wavelet-packet-based energy index (WPEI) analysis were conducted to evaluate the health condition of the structure. By comparing the collected voltage signals, Power Spectrum Density (PSD) energy and WPEIs under different healthy states, it is shown that the test results are closely related to the length of the crack and the leakage in the epoxy joint. It is demonstrated that the devised approach has certain application value in detecting the crack and leakage in the joint of PCSBs.
机译:由于其众多竞争优势,预制混凝土节段桥梁(PCSBS)已广泛用于桥梁工程。 PCSBS的结构行为和健康状况在很大程度上取决于组装段之间的关节的性能。然而,由于施工误差和动态负载条件,在施工或操作阶段的PCSB的环氧接头处发现了一些裂缝和泄漏。这些缺陷会影响关节质量,对桥的安全性和耐用性产生负面影响。提出了一种结构健康监测(SHM)方法,其使用活性感测用基于压电陶瓷的智能聚集体(SA)来检测PCSB的环氧树脂关节中的裂缝和泄漏,并通过实验研究了本作工作的可行性。用安装的SA预制两个混凝土棱镜,并用环氧树脂接头组装。通过在没有环氧树脂的关节中心留下3厘米的裂缝来模拟初始缺陷。总共有13个测试用例和没有水和填充水的不同长度的裂缝进行了模拟和测试。进行时域分析,频域分析和基于小波分组的能量指数(WPEI)分析以评估结构的健康状况。通过比较收集的电压信号,功率谱密度(PSD)能量和WPEIS在不同的健康状态下,表明测试结果与裂缝的长度与环氧接头中的泄漏密切相关。结果证明,设计的方法在检测PCSBS联合中的裂缝和泄漏方面具有一定的应用价值。

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