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Corrosion monitoring in steel bars using Laser ultrasonic guided waves and advanced signal processing

机译:使用激光超声波引导波和先进信号处理钢筋腐蚀监测

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Ultrasonic scanning can present a detailed map of the invisible internal degradation of objects. However, their utility is limited in the case of built facilities as their dimensions are too large for the currently used piezoelectric transducers to penetrate. This paper presents an investigation with high power Laser ultrasonic guided waves combined with an advanced signal processing for discerning corrosion in structural steel bars. The pros and cons of Laser ultrasonic monitoring vis-a-vis traditional piezoelectric systems have been highlighted. Dispersion curves for the steel bars have been deduced to understand its modal characteristics. The variations in time-frequency spectra due to the spread in corrosion have been correlated with the predominant propagation modes in the bar. The time-frequency spectral pattern obtained from the proposed signal processing techniques are calibrated with the mass loss due to corrosion. A K-means cluster-based approach has been used to predict the state of corrosion.
机译:超声波扫描可以呈现对象的无形内部劣化的详细图。然而,在建筑设施的情况下,它们的效用是有限的,因为它们的尺寸太大,对于目前使用的压电传感器来渗透。本文介绍了高功率激光超声波引导波的研究,结合了用于在结构钢筋中辨别腐蚀的先进信号处理。激光超声波监测VIS-Vis传统压电系统的优缺点已突出显示。已经推导出钢筋的分散曲线以了解其模态特性。由于腐蚀的涂抹而导致的时频光谱的变化与杆中的主要传播模式相关。从所提出的信号处理技术获得的时频谱模式被校准,由于腐蚀而具有质量损失。 K-Means基于群集的方法已被用于预测腐蚀的状态。

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