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Hybrid Signal Processing Technique to Improve the Defect Estimation in Ultrasonic Non-Destructive Testing of Composite Structures

机译:改善复合结构超声无损检测缺陷估计的混合信号处理技术

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摘要

This work proposes a novel hybrid signal processing technique to extract information on disbond-type defects from a single B-scan in the process of non-destructive testing (NDT) of glass fiber reinforced plastic (GFRP) material using ultrasonic guided waves (GW). The selected GFRP sample has been a segment of wind turbine blade, which possessed an aerodynamic shape. Two disbond type defects having diameters of 15 mm and 25 mm were artificially constructed on its trailing edge. The experiment has been performed using the low-frequency ultrasonic system developed at the Ultrasound Institute of Kaunas University of Technology and only one side of the sample was accessed. A special configuration of the transmitting and receiving transducers fixed on a movable panel with a separation distance of 50 mm was proposed for recording the ultrasonic guided wave signals at each one-millimeter step along the scanning distance up to 500 mm. Finally, the hybrid signal processing technique comprising the valuable features of the three most promising signal processing techniques: cross-correlation, wavelet transform, and Hilbert–Huang transform has been applied to the received signals for the extraction of defects information from a single B-scan image. The wavelet transform and cross-correlation techniques have been combined in order to extract the approximated size and location of the defects and measurements of time delays. Thereafter, Hilbert–Huang transform has been applied to the wavelet transformed signal to compare the variation of instantaneous frequencies and instantaneous amplitudes of the defect-free and defective signals.
机译:这项工作提出了一种新颖的混合信号处理技术,该技术可以在使用超声波导波(GW)对玻璃纤维增​​强塑料(GFRP)材料进行无损检测(NDT)的过程中,从单个B扫描中提取脱粘型缺陷的信息。 。所选的GFRP样品是风力涡轮机叶片的一部分,具有空气动力学形状。在其后缘上人为地构造了两个直径为15mm和25mm的剥离型缺陷。实验是使用考纳斯工业大学超声研究所开发的低频超声系统进行的,仅访问了样品的一侧。提出了一种固定在可移动面板上,间距为50 mm的发射和接收换能器的特殊配置,用于记录沿500 mm扫描距离的每一毫米步长的超声波导波信号。最后,包含三种最有前途的信号处理技术的有价值特征的混合信号处理技术已应用于接收信号,以从单个B-线中提取缺陷信息,这些技术具有互相关,小波变换和希尔伯特-黄变换。扫描图像。小波变换和互相关技术已被组合在一起,以提取缺陷的近似大小和位置以及时间延迟的测量值。此后,希尔伯特-黄(Hilbert-Huang)变换已应用于小波变换信号,以比较无缺陷和有缺陷信号的瞬时频率和瞬时幅度的变化。

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