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Long-term stability of guided wave structural health monitoring using distributed adhesively bonded piezoelectric transducers

机译:使用分布式粘合压电换能器的导波结构健康监测的长期稳定性

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摘要

Industrial interest in structural health monitoring of safety-critical assets is increasing. Guided wave structural health monitoring shows potential for practical use as it allows detection of small defects (1.5% reflection changes) in the presence of environmental changes. Guided wave structural health monitoring systems use bonded piezoelectric sensors to monitor wave propagation patterns and subtraction between signals and baselines from the "healthy" structure for robust discrimination of damage. Long-term stability of structural health monitoring using these techniques has been investigated in this article as this is essential for industrial deployment of a system. Plates that were exposed to thermal cycling in an environmental chamber were monitored using bonded SO mode sensors operating in pitch catch. Analysis of structural health monitoring data revealed drifts in baseline subtraction results corresponding to progressive reduction in defect sensitivity levels. These drifts were correlated with increases in coherent variability and suspected to be due to variations in the adhesive properties of the bonds between the sensors and the structure. Finite element analysis and further experimental results confirmed that changes in adhesive properties were a likely cause of the degradation in monitoring capability with time.
机译:工业界对安全关键资产的结构健康监视的兴趣正在增加。导波结构健康监测显示出实际应用的潜力,因为它可以在存在环境变化的情况下检测小缺陷(反射变化为1.5%)。导波结构健康监测系统使用粘合的压电传感器来监测“健康”结构的波传播模式和信号与基线之间的相减,以可靠地识别损坏。本文已经研究了使用这些技术进行结构健康监测的长期稳定性,因为这对于系统的工业部署至关重要。使用在螺距捕集器中运行的键合SO模式传感器监控暴露于环境室内热循环的印版。对结构健康监测数据的分析表明,基线减法结果的漂移与缺陷敏感性水平的逐步降低相对应。这些漂移与相干可变性的增加相关,并且怀疑是由于传感器和结构之间的键的粘合特性的变化而引起的。有限元分析和进一步的实验结果证实,粘合性能的变化可能是随时间推移监测能力下降的原因。

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