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Development of comprehensive heterodyne effect based inspection (CHEBI) method for inclusive monitoring of cracks

机译:基于综合性外差效应的开发基于外差效应的裂缝包容性监测方法

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摘要

Early detection of developing structural cracks is extremely important in improving safety and reducing maintenance costs in structural, aerospace, chemical, petrochemical, gas, and oil industries. Nonlinear structural health monitoring methods, such as wave modulation spectroscopy (NWMS), can detect the cracks in their early stages of development. Such methods usually rely on the combination of a high and a low-frequency, vibro-acoustic, excitation for defect detection. However, a priori knowledge of the characteristics of the crack is required for selection of the appropriate frequency combination. In this study, the Comprehensive Heterodyne Effect Based Inspection (CHEBI) method is proposed to address this issue. The CHEBI method applies ascending and descending broadband frequency sweeps simultaneously to study the response of the structure in wide ranges of frequencies in the time-frequency domain. Therefore, it eliminates the need for multiple experimental tests to find appropriate combinations of the high and the low-frequency components. The proposed method detected cracks from 1?mm to 25?mm in length on a dog-bone shaped aluminum specimen. These results confirm that the CHEBI can be successfully applied for detection of cracks with varying severities without the need for adjustment of the excitation frequencies.
机译:早期发现发展结构裂缝在提高安全性和降低结构,航空航天,化学,石化,天然气和石油行业的安全性和降低维护成本方面非常重要。非线性结构健康监测方法,如波调制光谱(NWMS),可以检测其早期发展阶段的裂缝。这些方法通常依赖于高频和低频,振动声,缺陷检测的激励的组合。然而,选择适当的频率组合需要先验的裂缝特性知识。在本研究中,提出了基于综合的外差效应的检查(CHEBI)方法来解决这个问题。 Chebi方法同时应用升序和下降宽带频率扫描,以研究时频域中宽频率范围的结构的响应。因此,它消除了多个实验测试的需要,以找到高和低频分量的适当组合。所提出的方法在狗骨形铝样品上检测到1Ωmm至25Ωmm的裂缝。这些结果证实了Chebi可以成功地应用于检测具有不同严重性的裂缝,而无需调节激发频率。

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