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Compensation of temperature effect on impedance responses of PZT interface for prestress-loss monitoring in PSC girders

机译:补偿温度对PZT接口阻抗响应的影响,以监测PSC大梁中的预应力损失

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摘要

In this study, a method to compensate the effect of temperature variation on impedance responses which are used for prestress-loss monitoring in prestressed concrete (PSC) girders is presented. Firstly, an impedance-based technique using a mountable lead-zirconate-titanate (PZT) interface is presented for prestress-loss monitoring in the local tendon-anchorage member. Secondly, a cross-con-elation-based algorithm to compensate the effect of temperature variation in the impedance signatures is outlined. Thirdly, lab-scale experiments are performed on a PSC girder instrumented with a mountable PZT interface at the tendon-anchorage. A series of temperature variation and prestress-loss events are simulated for the lab-scale PSC girder. Finally, the feasibility of the proposed method is experimentally verified for prestress-loss monitoring in the PSC girder under temperature-varying conditions and prestress-loss events.
机译:在这项研究中,提出了一种补偿温度变化对阻抗响应的影响的方法,该方法用于预应力混凝土(PSC)大梁的预应力损失监测。首先,提出了一种使用可安装的锆钛酸铅(PZT)接口的基于阻抗的技术,用于局部肌腱锚固构件中的预应力损失监测。其次,概述了一种基于交叉关联的算法来补偿温度变化对阻抗特征的影响。第三,实验室规模的实验是在安装有PZT接口的PSC大梁上进行的,该PZT接口位于腱锚固处。针对实验室规模的PSC大梁模拟了一系列温度变化和预应力损失事件。最后,通过实验验证了所提出方法在温度变化条件下和预应力损失事件下对PSC梁进行预应力损失监测的可行性。

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