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Analysis of Vibroacoustic Modulations for Crack Detection: A Time-Frequency Approach Based on Zhao-Atlas-Marks Distribution

机译:用于裂纹检测的振动声调制分析:一种基于赵-阿特拉斯-马克分布的时频方法

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The vibro-acoustic modulation (VAM) technique is probably the most widely used nonlinear method for crack detection. The VAM method is based on the effect of modulation of high-frequency acoustic waves by a low-frequency vibration. The intensity of the modulation is related to the severity of the damage and has been used so far as a damage index. The damage index simply based on the amplitude of the first side bands in the spectral domain often leads to controversial results about the severity of the damage. In this work, the nonlinear characteristics of the vibro-modulation were systematically investigated by employing time-frequency analysis based on the Zhao-Atlas-Marks (ZAM) distribution. The results of the analysis show that the amplitude of the sideband components is modulated by the low frequency vibration and the modulation amplitude depends on the size of the crack. Based on the obtained results, a new damage index was defined in relation to the strength of the modulation. The new damage index is more sensitive and robust and correlates better with crack size compared to the index based on the amplitude of the sidebands.
机译:振动声调制(VAM)技术可能是最广泛使用的非线性裂纹检测方法。 VAM方法基于低频振动对高频声波的调制效果。调制强度与损坏的严重程度有关,并已被用作损坏指数。仅基于光谱域中第一边带幅度的损伤指数通常会导致关于损伤严重性的争议性结果。在这项工作中,通过基于Zhao-Atlas-Marks(ZAM)分布的时频分析,系统地研究了振动调制的非线性特性。分析结果表明,边带分量的幅度受到低频振动的调制,调制幅度取决于裂纹的大小。基于获得的结果,相对于调制强度定义了新的损伤指数。与基于边带幅度的指数相比,新的破坏指数更敏感,更可靠,并且与裂纹尺寸的相关性更好。

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