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Detection of cracks in plates using piezo-actuated Lamb waves

机译:使用压电致动Lamb波检测板中的裂纹

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In this paper, a comprehensive methodology for locating and determining the extent of linear cracks in homogeneous plates based on the time-of-flight analysis of Lamb wave propagation is proposed. Piezoelectric sensors and actuators (PZTs) placed on a square grid configuration are used to excite and receive direct and reflected waves. The actuation frequency, spacing of PZTs and length of the signal to analyze are first determined. The grid is used to sweep across the plate to identify the location of a crack, if there is one. Elliptical loci of possible crack positions are constructed based on the flight time of crack-reflected waves estimated using energy spectra from the Hilbert-Huang transform of the sensor signals. A detailed procedure for obtaining the ellipses is described, including the blind zones. After identifying the crack position, the crack orientation is determined by varying the positions of the PZTs and observing the strength of the energy peaks in the Hilbert spectra. This provides the basis for moving the PZTs to estimate the extent of the crack. Experimental results obtained using aluminum plates with through, half-through and concealed cracks showed that the proposed method is feasible and accurate.
机译:本文基于兰姆波传播的飞行时间分析,提出了一种用于定位和确定均质板中线性裂纹程度的综合方法。置于正方形网格结构上的压电传感器和执行器(PZT)用于激发和接收直接波和反射波。首先确定驱动频率,PZT的间隔和要分析的信号长度。网格用于扫过板,以识别裂纹的位置(如果存在)。基于裂纹反射波的飞行时间,构造了可能的裂纹位置的椭圆轨迹,该波反射时间是根据传感器信号的希尔伯特-黄(Hilbert-Huang)变换的能谱估算的。描述了获得椭圆的详细过程,包括盲区。识别裂纹位置后,通过改变PZT的位置并观察希尔伯特光谱中能量峰的强度来确定裂纹取向。这为移动PZT估计裂纹的范围提供了基础。使用具有贯穿,半贯穿和隐藏裂纹的铝板获得的实验结果表明,该方法是可行且准确的。

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