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Quantification of temperature effect on impedance monitoring via PZT interface for prestressed tendon anchorage

机译:预应力肌腱锚固PZT接口温度效应的量化

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In this study, the quantification of temperature effect on impedance monitoring via a PZT interface for prestressed tendon-anchorage is presented. Firstly, a PZT interface-based impedance monitoring technique is selected to monitor impedance signatures by predetermining sensitive frequency bands. An analytical model is designed to represent coupled dynamic responses of the PZT interface-tendon anchorage system. Secondly, experiments on a lab-scaled tendon anchorage are described. Impedance signatures are measured via the PZT interface for a series of temperature and prestress-force changes. Thirdly, temperature effects on measured impedance responses of the tendon anchorage are estimated by quantifying relative changes in impedance features (such as RMSD and CCD indices) induced by temperature variation and prestress-force change. Finally, finite element analyses are conducted to investigate the mechanism of temperature variation and prestress-loss effects on the impedance responses of prestressed tendon anchorage. Temperature effects on impedance monitoring are filtered by effective frequency shift-based algorithm for distinguishing prestress-loss effects on impedance signatures.
机译:在该研究中,提出了通过PZT接口对预应力肌腱锚固的影响监测的温度效应的定量。首先,选择基于PZT接口的阻抗监测技术来通过预先确定敏感频带监测阻抗签名。分析模型旨在表示PZT接口 - 肌腱锚固系统的耦合动态响应。其次,描述了对实验室鳞片肌腱锚固的实验。阻抗签名通过PZT接口测量,用于一系列温度和预应力的变化。第三,通过量化由温度变化和预应力转力变化引起的阻抗特征(例如RMSD和CCD指标)的相对变化来估计对肌腱锚固的测量抵抗的温度效应。最后,进行有限元分析以研究温度变化和预应力损失对预应力肌腱锚固阻抗反应的影响。基于有效频移的算法过滤了对阻抗监测的温度效应,以区分预应力损失对阻抗签名的影响。

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