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Detection of cracks in simply-supported beams by continuous wavelet transform of reconstructed modal data

机译:通过连续模态数据的连续小波变换检测简支梁中的裂缝

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摘要

This paper proposes a new approach for damage detection in beam-like structures with small cracks, whose crack ratio [r = Hc/H] is less than 5%, without baseline modal parameters. The approach is based on the difference of the continuous wavelet transforms (CWTs) of two sets of mode shape data which correspond to the left half and the right half of the modal data of a cracked simply-supported beam. The mode shape data of a cracked beam are apparently smooth curves, but actually exhibit local peaks or discontinuities in the region of damage because they include additional response due to the cracks. The modal responses of the damaged simply-supported beams used are computed using the finite element method. The results demonstrate the efficiency of the proposed method for crack detection, and they provide a better crack indicator than the result of the CWT of the original mode shape data. The effects of crack location and sampling interval are examined. The simulated and experimental results show that the proposed method has great potential in crack detection of beam-like structures as it does not require the modal parameter of an uncracked beam as a baseline for crack detection. It can be recommended for real applications.
机译:本文提出了一种新的损伤小梁形结构损伤检测的新方法,其裂缝率[r = Hc / H]小于5%,没有基线模态参数。该方法基于两组模式形状数据的连续小波变换(CWT)的差异,该模式分别对应于简支简支梁的模态数据的左半部分和右半部分。裂纹光束的模态数据显然是平滑的曲线,但实际上在损坏区域显示局部峰值或不连续性,因为它们包括由于裂纹引起的附加响应。使用有限元方法计算所使用的受损简支梁的模态响应。结果证明了所提出的裂纹检测方法的效率,并且它们提供了比原始模式形状数据的CWT结果更好的裂纹指示符。检查裂纹位置和采样间隔的影响。仿真和实验结果表明,该方法不需要梁的模态参数作为裂纹检测的基准,因此在梁状结构的裂纹检测中具有很大的潜力。可以推荐用于实际应用。

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