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Study of inspection on metal sheet with subsurface defects using linear frequency modulated ultrasound excitation thermal-wave imaging (LFM-UTWI)

机译:利用线性调频超声激发热波成像(LFM-UTWI)对具有表面缺陷的金属板进行检查的研究

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摘要

The linear frequency modulated ultrasound excitation thermal wave imaging (LFM-UTWI) was investigated on detection of subsurface defects of metal sheet. A numerical finite element analysis is carried out to calculate thermal wave signal dependence of time by linear frequency modulated ultrasonic wave excitation. Cross-correlation operation in time domain and frequency domain are used to extract the main peak value and the corresponding delay time, respectively. Fourier transform (FT) is applied to calculate the amplitude and phase angle of harmonic component of thermal wave. Experimental results show that various deep subsurface defects are readily detected using LFM-UTWI with once excitation, and LFM-UTWI has an advantage of better defect detectability compared to ultrasound lock-in thermography (ULIT).
机译:研究了线性调频超声激发热波成像(LFM-UTWI)在金属薄板表面缺陷检测中的应用。进行了数值有限元分析,以通过线性调频超声波激励来计算热波信号对时间的依赖性。时域和频域的互相关运算分别用于提取主峰值和相应的延迟时间。应用傅立叶变换(FT)计算热波谐波分量的幅度和相位角。实验结果表明,使用LFM-UTWI一次激发即可轻松检测出各种深层地下缺陷,与超声锁定热成像(ULIT)相比,LFM-UTWI具有更好的缺陷可检测性的优势。

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