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Acoustic Emission Localization on A Large Anisotropic Composite Plate

机译:大型各向异性复合板上的声学发射定位

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A novel acoustic emission location approach was presented for large anisotropic composite plates with unknown lay-up and wave velocity. The proposed algorithm was based on the differences of acoustic emission signals measured by four piezoelectric sensors surface-bonded in a small area. Wavelet scale spectrum combined with cubic splines interpolation was employed to obtain the time of arrivals (TOA) of different acoustic emission signals. Then, the source location would be identified by solving a set of non-linear equations. The performance of the proposed approach was validated through pencil-lead breaks performed on a large anisotropic composite plate. The results conclusively demonstrated that the proposed method can obtain a reasonable accuracy (maximum error was approximately 3%) when the distance between acoustic source and the origin of coordinates was more than 120 mm.
机译:提出了一种具有未知叠层和波速的大型各向异性复合板的新型声发射定位方法。所提出的算法基于由四个压电传感器测量的声发射信号的差异在一个小面积中结合的四个压电传感器测量。采用小波刻度谱与立方样条插值相结合,以获得不同声发射信号的抵达时间(TOA)。然后,通过求解一组非线性方程来识别源位置。通过在大型各向异性复合板上进行的铅笔铅断裂来验证所提出的方法的性能。结果表明,当声源和坐标原点超过120mm的距离时,所提出的方法可以获得合理的精度(最大误差约为3%)。

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