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首页> 外文期刊>Journal of Sound and Vibration >Nonlinear ultrasonic wave modulation for online fatigue crack detection
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Nonlinear ultrasonic wave modulation for online fatigue crack detection

机译:用于在线疲劳裂纹检测的非线性超声波调制

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摘要

This study presents a fatigue crack detection technique using nonlinear ultrasonic wave modulation. Ultrasonic waves at two distinctive driving frequencies are generated and corresponding ultrasonic responses are measured using permanently installed lead zirconate titanate (PZT) transducers with a potential for continuous monitoring. Here, the input signal at the lower driving frequency is often referred to as a 'pumping' signal, and the higher frequency input is referred to as a 'probing' signal. The presence of a system nonlinearity, such as a crack formation, can provide a mechanism for nonlinear wave modulation, and create spectral sidebands around the frequency of the probing signal. A signal processing technique combining linear response subtraction (LRS) and synchronous demodulation (SD) is developed specifically to extract the crack-induced spectral sidebands. The proposed crack detection method is successfully applied to identify actual fatigue cracks grown in metallic plate and complex fitting-lug specimens. Finally, the effect of pumping and probing frequencies on the amplitude of the first spectral sideband is investigated using the first sideband spectrogram (FSS) obtained by sweeping both pumping and probing signals over specified frequency ranges.
机译:这项研究提出了一种使用非线性超声波调制的疲劳裂纹检测技术。产生两个不同的驱动频率的超声波,并使用永久安装的锆钛酸铅(PZT)换能器(具有连续监测的潜力)测量相应的超声波响应。在此,较低驱动频率的输入信号通常称为“泵送”信号,而较高频率的输入则称为“探测”信号。系统非线性(例如裂纹形成)的存在可以提供非线性波调制的机制,并在探测信号的频率附近创建频谱边带。专门开发了一种将线性响应减法(LRS)和同步解调(SD)相结合的信号处理技术,以提取裂纹诱发的频谱边带。提出的裂纹检测方法已成功应用于识别金属板和复杂的凸耳试样中生长的实际疲劳裂纹。最后,使用第一边带频谱图(FSS)研究了泵浦和探测频率对第一频谱边带幅度的影响,该谱图是通过扫描指定频率范围内的泵浦和探测信号而获得的。

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