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Load monitoring and compensation strategies for guided-waves based structural health monitoring using piezoelectric transducers

机译:使用压电传感器的基于导波的结构健康监测的负载监测和补偿策略

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Accurate interpretation of in-situ piezoelectric sensor signals is a challenging task. This paper presents the development of a numerical compensation model based on physical insight to address the influence of structural loads on piezo-sensor signals. The model requires knowledge of in-situ strain and temperature distribution in a structure while acquiring piezoelectric sensor signals. The parameters of the numerical model are obtained using experiments on flat aluminum plate under uniaxial tensile loading. It is shown that the model parameters obtained experimentally can be used for different structures, and sensor layout. Furthermore, the combined effects of load and temperature on the piezo-sensor response are also investigated and it is observed that both of these factors have a coupled effect on the sensor signals, It is proposed to obtain compensation model parameters under a range of operating temperatures to address this coupling effect. An important outcome of this study is a new load monitoring concept using in-situ piezoelectric sensor signals to track changes in the load paths in a structure. Published by Elsevier Ltd.
机译:准确解释原位压电传感器信号是一项艰巨的任务。本文介绍了基于物理洞察力的数字补偿模型的开发,以解决结构载荷对压电传感器信号的影响。该模型要求在获取压电传感器信号的同时了解结构中的原位应变和温度分布。数值模型的参数是通过在单轴拉伸载荷下在平板铝板上进行的实验获得的。结果表明,实验获得的模型参数可用于不同的结构和传感器布局。此外,还研究了负载和温度对压电传感器响应的综合影响,并观察到这两个因素对传感器信号均具有耦合作用,建议在工作温度范围内获得补偿模型参数解决这种耦合效应。这项研究的重要成果是采用原位压电传感器信号跟踪结构中载荷路径变化的新载荷监测概念。由Elsevier Ltd.发布

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