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Flexible ultrasonic guided wave sensor development for structural health monitoring

机译:灵活的超声波导波传感器开发,用于结构健康监测

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摘要

Sensor development and signal processing are two key issues in structural health monitoring (SHM). A process of PVDF annular array sensor design via guided ultrasonic wave propagation, excitation, and wave damage interaction modeling is presented in this paper. A sample problem to monitor the occurrence and progression of simulated corrosion damage in an aluminum plate is studied. An effective guided wave mode for easy corrosion depth assessment was selected based on guided wave propagation analysis. Three dimensional finite element method (FEM) analyses were performed to study the wave field excited from PVDF annular arrays and sectioned annular arrays in the aluminum plate. Annular arrays with enhanced mode selection capabilities were permanently bonded to a 1mm aluminum plate. Simulated corrosion damage with progressive corrosion depths was successfully detected in the structure using wave mode based signal analysis and feature extraction. The relation between the damage depth and the reflection wave amplitude from the signal were studied with both numerical simulation and experiments.
机译:传感器开发和信号处理是结构健康监测(SHM)中的两个关键问题。本文介绍了一种通过引导的超声波传播,激发和波损伤相互作用建模来设计PVDF环形阵列传感器的过程。研究了一个样本问题,以监控铝板中模拟腐蚀损坏的发生和进展。在导波传播分析的基础上,选择了一种有效的导波模式,用于容易的腐蚀深度评估。进行了三维有限元方法(FEM)分析,以研究铝板上PVDF环形阵列和分段环形阵列所激发的波场。具有增强的模式选择功能的环形阵列永久性地粘合到1mm的铝板上。使用基于波模式的信号分析和特征提取,可以在结构中成功检测到具有渐进腐蚀深度的模拟腐蚀损伤。通过数值模拟和实验研究了损伤深度与信号反射波幅度之间的关系。

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