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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Local Wavenumber Method for Delamination Characterization in Composites With Sparse Representation of Lamb Waves
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Local Wavenumber Method for Delamination Characterization in Composites With Sparse Representation of Lamb Waves

机译:羊波稀疏表示的复合材料中分层特征的局部波数法

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摘要

This article presents a quantitative Lamb wave detection method for delamination characterization in composite laminates using local wavenumber features. In contrast to the conventional Fourier transform-based methods, the improved sparse reconstruction method is efficient and able to evaluate the spatial wavenumbers of Lamb waves with limited measurements. To improve the feasibility of the sparse reconstruction method, the analytical solution of the local wavenumbers to the compressed sensing (CS) formulation with considering structural discontinuity is firstly investigated. The estimated wavenumber values for the spatial window located on healthy and damaged regions simultaneously are governed by a nonlinear optimization function. Benefiting from revealing the evolution of local wavenumber slopes, a delamination characterization method is proposed to accurately determine the damage location and depth by wavenumber banalization. Subsequently, the performance of the proposed method on local wavenumber estimation and damage quantification is verified by the simulation data. The parameters are discussed in order to improve the algorithm stability. Finally, the experimental investigation was conducted on a quasi-isotropic carbon fiber reinforced polymer (CFRP) laminate with an induced delamination. Lamb wave was generated and scanned by the Nd:YAG laser spot with spatial intervals of 2 mm. The results verify the sparse reconstruction method for delamination characterization, which shows value of reducing labor cost and testing time.
机译:本文介绍了使用局部波数特征的复合层压板中分层表征的定量λ波检测方法。与传统的傅里叶变换的方法相比,改善的稀疏重建方法是有效的,并且能够评估羔羊波的空间波浪与测量有限。为了提高稀疏重建方法的可行性,首先研究了考虑结构不连续性的局部波数与压缩检测(CS)配方的分析溶液。同时位于健康和损坏区域的空间窗口的估计波数值由非线性优化功能控制。促进局部波数斜坡的演变,提出了一种分层表征方法,以准确地确定波数大化的损伤位置和深度。随后,通过模拟数据验证所提出的方法对本地波数估计和损坏量化的性能。讨论参数以提高算法稳定性。最后,在诱导分层对准各向同性碳纤维增强聚合物(CFRP)层压板上进行了实验研究。由Nd:YAG激光斑点产生羊毛波,其空间间隔为2毫米。结果验证了分层表征的稀疏重建方法,其显示降低劳动力成本和测试时间的值。

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