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Orienting fatigue cracks using contact acoustic nonlinearity in scattered plate waves

机译:使用散射板波的接触声非线性定向疲劳裂缝

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摘要

Targeting quantitative delineation of nonlinear scatterers in elastic media and undersized fatigue cracks in particular, the present study is dedicated to investigation, from analytical, numerical, and experimental perspectives, of the underlying mechanism of interaction between guided ultrasonic waves (GUWs) and 'breathing' fatigue cracks-a representative nonlinear scatterer type. Under the modulation of probing GUWs, a 'breathing' crack scatters GUWs, in which the crack-triggered contact acoustic nonlinearity (CAN) is embodied. Analytical modeling demonstrates that the extracted CAN manifests unique scattering patterns associated with the crack slant, on which basis the crack can be oriented, without requiring reference to baseline signals. Experimental validation corroborates analytical prediction, in which an embryonic fatigue crack in an aluminum plate waveguide is oriented accurately and visualized in a pixelated image.
机译:靶向弹性介质中非线性散射体的定量描绘,特别是小疲劳裂缝,本研究专用于引导超声波(GUWS)与“呼吸”之间的相互作用的基础机制的研究。 疲劳裂缝 - 代表性非线性散射体类型。 在探测GUW的调制下,“呼吸”裂缝散击GUWS,其中体现了裂缝触发的接触声非线性(CAN)。 分析建模表明,提取的可以表现出与裂缝倾斜相关的独特的散射图案,在该裂缝可以定向裂缝,而不需要参考基线信号。 实验验证证实了分析预测,其中铝板波导中的胚胎疲劳裂缝精确地定向并在像素化图像中可视化。

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