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Analytical insight into 'breathing' crack-induced acoustic nonlinearity with an application to quantitative evaluation of contact cracks

机译:分析洞察“呼吸”裂缝诱导的声学非线性,以应用于接触裂缝的定量评估

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摘要

To characterize fatigue cracks, in the undersized stage in particular, preferably in a quantitative and precise manner, a two-dimensional (2D) analytical model is developed for interpreting the modulation mechanism of a "breathing" crack on guided ultrasonic waves (GUWs). In conjunction with a modal decomposition method and a variational principle-based algorithm, the model is capable of analytically depicting the propagating and evanescent waves induced owing to the interaction of probing GUWs with a "breathing" crack, and further extracting linear and nonlinear wave features (e.g., reflection, transmission, mode conversion and contact acoustic nonlinearity (CAN)). With the model, a quantitative correlation between CAN embodied in acquired GUWs and crack parameters (e.g., location and severity) is obtained, whereby a set of damage indices is proposed via which the severity of the crack can be evaluated quantitatively. The evaluation, in principle, does not entail a benchmarking process against baseline signals. As validation, the results obtained from the analytical model are compared with those from finite element simulation, showing good consistency. This has demonstrated accuracy of the developed analytical model in interpreting contact crack-induced CAN, and spotlighted its application to quantitative evaluation of fatigue damage. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了表征疲劳裂缝,特别是以定量和精确的方式在下尺寸的阶段,开发了一种用于解释引导超声波(GUWS)上“呼吸”裂缝的调制机制的二维(2D)分析模型。结合模态分解方法和变分原理的算法,该模型能够分析地描绘由于探测GUW与“呼吸”裂缝的相互作用而引起的传播和渐逝波,以及进一步提取线性和非线性波特征(例如,反射,传输,模式转换和接触声非线性(CAN))。利用该模型,获得可以体现在获取的GUW和裂缝参数(例如,位置和严重程度)之间的定量相关性,从而提出了一组损坏指标,通过该损坏索引可以定量地评估裂缝的严重程度。原则上,评估不需要对基线信号进行基准过程。作为验证,将从分析模型获得的结果与来自有限元模拟的结果进行比较,显示出良好的一致性。这证明了在解释接触裂缝诱导的罐中发达的分析模型的准确性,并分析了其应用来定量评估疲劳损伤。 (c)2018 Elsevier B.v.保留所有权利。

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