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Piezoelectric-based hoop-type interface for impedance monitoring of local strand breakage in prestressed multi-strand anchorage

机译:预应力多股锚固局部局部绞线断裂阻抗监测的压电基环型界面

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摘要

In this study, a piezoelectric-based interface technique for impedance measurement is presented to monitor local strand breakage in multi-strand anchorage systems. Firstly, a hoop interface-based impedance measurement model is designed based on stress behaviors of the multi-strand anchorage. Coupled dynamic behaviors between the lead zirconate titanate (PZT) interface and the target tendon anchorage are interpreted to determine sensitive frequency ranges under local strand breakage. Next, a prototype of the PZT interface is designed to fit into the target multi-strand anchorage to monitor the stress variations induced by local strand breakages. Dynamic characteristics of the PZT interface are numerically analyzed to sensitively catch impedance signals in predetermined frequency ranges. Finally, a series of damage scenarios are tested on a full-scale multi-strand anchorage system to evaluate the feasibility of the PZT interface for monitoring a series of strand-breakage cases. Impedance responses of the PZT interface prototype are analyzed to determine damage-sensitive frequency ranges. Linear tomography of root-mean-square-deviation (RMSD) indices is utilized to localize damaged strands.
机译:在该研究中,提出了一种用于阻抗测量的基于压电的界面技术,以监测多股锚固系统中的局部链断。首先,基于多股锚固的应力行为设计了一种基于箍界面的阻抗测量模型。引线锆钛酸盐界面(PZT)界面和目标肌腱锚固之间的耦合动态行为被解释为确定局部股线断裂下的敏感频率范围。接下来,设计PZT界面的原型设计成适合目标多股锚固,以监测由局部链断断裂引起的应力变化。在数值上分析PZT接口的动态特性以在预定频率范围内灵敏地捕获阻抗信号。最后,在全尺寸的多链锚固系统上测试了一系列损坏情景,以评估PZT接口的可行性,用于监测一系列股线破损案例。分析PZT接口原型的阻抗响应以确定损伤敏感频率范围。根平均方偏差(RMSD)指数的线性层析术用于本地化损坏的股线。

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