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Fatigue crack visualization using noncontact laser ultrasonics and state space geometrical changes

机译:使用非接触激光超声和状态空间几何变化的疲劳裂纹可视化

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Fatigue crack and its precursor often serves as a nonlinear source, and the nonlinear ultrasonic features created by a fatigue crack have a much higher sensitivity compared with linear features. This paper presents a fatigue crack visualization technique based on noncontact laser ultrasonics and state space techniques. Under a broadband laser pulse excitation, defect nonlinearity exhibits modulation at multiple frequency peaks in a spectral plot due to interactions among various input frequency components of the broadband input. These modulations are weak and hardly discernable in both the frequency and time domains, In order to detect the nonlinear changes caused by fatigue cracks in the time domain, a state space attractor is reconstructed using a single laser pulse response and its geometrical deviations from the baseline data obtained from the pristine condition of a target structure are computed. Through scanning tests using a Q-switched Nd:YAG laser and laser Doppler vibrometer (LDV), the proposed method can be used for visualizing fatigue cracks in metallic plates.
机译:疲劳裂纹及其前体通常充当非线性源,并且疲劳裂纹所产生的非线性超声特征与线性特征相比具有更高的灵敏度。本文提出了一种基于非接触激光超声和状态空间技术的疲劳裂纹可视化技术。在宽带激光脉冲激励下,由于宽带输入的各种输入频率分量之间的相互作用,缺陷非线性在频谱图中的多个频率峰值处表现出调制。这些调制在频域和时域都是微弱的,几乎无法辨认。为了检测时域中疲劳裂纹引起的非线性变化,使用单个激光脉冲响应及其与基线的几何偏差来重建状态空间吸引子计算从目标结构的原始条件获得的数据。通过使用Q开关Nd:YAG激光器和激光多普勒振动计(LDV)进行的扫描测试,该方法可用于可视化金属板上的疲劳裂纹。

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