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Damage Quantification with Embedded Piezoelectric Aggregates Based on Wavelet Packet Energy Analysis

机译:基于小波包能量分析的嵌入式压电聚集体损伤量化

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摘要

Cement-based components have been widely used in civil engineering structures. However, due to wearing and deterioration, the cement-based components may have brittle failure. To provide early warning and to support predictive reinforcement, the piezoelectric materials are embedded into the cement-based components to excite and receive elastic waves. By recognizing the abnormalities in the elastic waves, hidden damage can be identified in advance. However, few research has been published regarding the damage quantification. In this paper, the wavelet packet analysis is adopted to calculate the energy of the transmitted elastic waves based on the improved piezoelectric aggregates (IPAs). Due to the growth of the damage, less elastic waves can pass through the damage zone, decreasing the energy of the acquired signals. A set of cement beams with different crack depths at the mid-span is tested in both numerical and experimental ways. A damage quantification index, namely the wavelet packet-based energy index (WPEI), is developed. Both the numerical and experimental results demonstrate that the WPEI decreases with respect to the crack depth. Based on the regression analysis, a strong linear relationship has been observed between the WPEI and the crack depth. By referring to the linear relationship, the crack depth can be estimated by the WPEI with a good accuracy. The results demonstrated that the use of the IPAs and the WPEI can fulfill the real-time quantification of the crack depth in the cement beams.
机译:水泥基组件已广泛用于土木工程结构中。但是,由于磨损和变质,水泥基部件可能会发生脆性破坏。为了提供预警并支持预测性加固,将压电材料嵌入到水泥基部件中以激发并接收弹性波。通过识别弹性波中的异常,可以提前识别出隐藏的损坏。但是,关于损伤定量的研究很少。本文采用小波包分析方法,基于改进的压电聚集体(IPA),计算了透射弹性波的能量。由于损伤的增加,较少的弹性波可以穿过损伤区域,从而降低了所获取信号的能量。用数值和实验方法测试了一组在中跨处具有不同裂缝深度的水泥梁。建立了损伤量化指标,即基于小波包的能量指标(WPEI)。数值和实验结果均表明WPEI随裂纹深度而减小。基于回归分析,已观察到WPEI与裂纹深度之间存在很强的线性关系。通过参考线性关系,可以用WPEI准确估计裂纹深度。结果表明,IPA和WPEI的使用可以实现水泥梁裂缝深度的实时定量。

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