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Reference-free fatigue crack detection using nonlinear ultrasonic modulation under various temperature and loading conditions

机译:在不同温度和负载条件下使用非线性超声调制的无参考疲劳裂纹检测

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摘要

This study presents a reference-free fatigue crack detection technique using nonlinear ultrasonic modulation. When low frequency (LF) and high frequency (HF) inputs generated by two surface-mounted lead zirconate titanate (PZT) transducers are applied to a structure, the presence of a fatigue crack can provide a mechanism for nonlinear ultrasonic modulation and create spectral sidebands around the frequency of the HF signal. The crack-induced spectral sidebands are isolated using a combination of linear response subtraction (LRS), synchronous demodulation (SD) and continuous wavelet transform (CWT) filtering. Then, a sequential outlier analysis is performed on the extracted sidebands to identify the crack presence without referring any baseline data obtained from the intact condition of the structure. Finally, the robustness of the proposed technique is demonstrated using actual test data obtained from simple aluminum plate and complex aircraft fitting-lug specimens under varying temperature and loading variations.
机译:这项研究提出了一种使用非线性超声调制的无参考疲劳裂纹检测技术。当将两个表面安装的钛酸锆钛酸铅(PZT)传感器产生的低频(LF)和高频(HF)输入应用于结构时,疲劳裂纹的存在可以提供一种非线性超声调制的机制并创建频谱边带在HF信号的频率附近。使用线性响应减法(LRS),同步解调(SD)和连续小波变换(CWT)滤波的组合来隔离裂纹诱发的频谱边带。然后,对提取的边带执行顺序离群值分析,以识别裂纹的存在,而无需参考从结构完整状态获得的任何基线数据。最后,使用从简单的铝板和复杂的飞机安装凸耳样品获得的实际测试数据,在变化的温度和载荷变化下证明了所提出技术的鲁棒性。

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