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Instantaneous Crack Detection under Changing Operational and Environmental Variations

机译:不断变化的操作和环境变化下的瞬时裂纹检测

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A new methodology of guided wave based nondestructive testing (NDT) is developed to detect crack damage in a thin metal structure without using prior baseline data or a predetermined decision boundary. In conventional guided wave based techniques, damage is often identified by comparing the "current" data obtained from a potentially damaged condition of a structure with the "past" baseline data collected at the pristine condition of the structure. However, it has been reported that this type of pattern comparison with the baseline data can lead to increased false alarms due to its susceptibility to varying operational and environmental conditions of the structure. To develop a more robust damage diagnosis technique, a new concept of NDT is conceived so that cracks can be detected even when the system being monitored is subjected to changing operational and environmental conditions. The proposed NDT technique utilizes the polarization characteristics of the piezoelectric wafers attached on the both sides of the thin metal structure. Crack formation creates Lamb wave mode conversion due to a sudden change in the thickness of the structure. Then, the proposed technique instantly detects the appearance of the crack by extracting this mode conversion from the measured Lamb waves, and the threshold value from damage classification is also obtained only from the current data set. Numerical and experimental results are presented to demonstrate the applicability of the proposed technique to instantaneous crack detection.
机译:开发了一种基于导波的无损检测(NDT)的新方法,可以检测薄金属结构中的裂纹损伤,而无需使用先前的基线数据或预定的决策边界。在基于常规导波的技术中,通常通过将从结构的潜在损坏状况获得的“当前”数据与在结构原始状况下收集的“过去”基线数据进行比较来识别损坏。然而,据报道,这种类型的图案与基线数据的比较由于其对结构的变化的操作和环境条件的敏感性而可能导致错误警报的增加。为了开发更强大的损伤诊断技术,构想了无损检测的新概念,即使在被监视的系统处于变化的操作和环境条件下,也可以检测到裂纹。提出的无损检测技术利用附着在薄金属结构两侧的压电晶片的极化特性。由于结构厚度的突然变化,裂纹的形成会产生兰姆波模式转换。然后,所提出的技术通过从测得的兰姆波中提取这种模式转换,立即检测出裂纹的出现,并且也仅从当前数据集中获得了来自损伤分类的阈值。数值和实验结果表明了该技术在瞬时裂纹检测中的适用性。

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