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Research on mixed-frequency nonlinear Lamb waves for micro-cracks detection in plate

机译:板中微裂纹检测的混频非线性兰姆波研究

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As linear ultrasonic technique is usually limited in detection of micro-cracks in plate, a nonlinear ultrasonic technique using mixed-frequency Lamb waves was proposed. Interaction of pure S0 mode Lamb waves and micro-cracks was simulated by finite element method. Spectrum analysis was utilized to extract the amplitude of sum frequency and difference frequency in receiving signal. The impact of crack length and crack thickness on the amplitude of sum and difference frequency was also taken into account. The results showed that there is a positive relationship between the crack length and the amplitude of sum and difference frequency, and this two amplitudes would decrease while the crack thickness kept increasing. Then an experiment was conducted to prove the feasibility of micro-cracks detection using the mixed-frequency nonlinear Lamb waves technique.
机译:由于线性超声技术通常在检测板中的微裂纹方面受到限制,因此提出了一种使用混合频率兰姆波的非线性超声技术。用有限元方法模拟了纯S0模式兰姆波与微裂纹的相互作用。利用频谱分析来提取接收信号中和频和差频的幅度。还考虑了裂纹长度和裂纹厚度对和频和差频幅度的影响。结果表明,裂纹长度与和频和差频幅值之间存在正相关关系,而这两个幅值将随着裂纹厚度的增加而减小。然后进行了实验,证明了使用混合频率非线性兰姆波技术检测微裂纹的可行性。

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