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An Approach to Size Sub-Wavelength Surface Crack Measurements Using Rayleigh Waves Based on Laser Ultrasounds

机译:基于激光超声的瑞利波尺寸尺寸子波长表面裂纹测量方法

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摘要

In this paper, the interaction of a broadband Rayleigh wave generated by a laser and an artificial rectangular notch is analyzed theoretically and experimentally. For the theoretical analysis, a Gaussian function is adopted to analyze the modulation of notch depth on the frequency spectrum via reflection and transmission coefficients. By the finite element method, the Rayleigh wave generated by pulsed laser beam irradiation and its scattering waves at cracks are calculated. A curve with a slope close to 4 fitted by crack depth and critical wavelength of the threshold phenomenon is obtained by the wavelet transform and Parseval’s theorem according to simulated and experimental results. Based on this relationship, the critical frequency at which the threshold phenomenon happens due to energy transformation of transmission/reflection Rayleigh waves is adopted to determine the size of sub-wavelength surface crack. The experimental results of artificial notch depth estimation on aluminum alloy specimens consistent with theoretical analysis validates the usefulness of the critical frequency method based on a broadband Rayleigh wave generated by laser ultrasonic.
机译:在本文中,理论上和实验地分析了激光和人造矩形凹口产生的宽带瑞利波的相互作用。为了理论分析,采用高斯功能来分析通过反射和透射系数对频谱上的凹口深度的调制。通过有限元方法,计算由脉冲激光束照射产生的瑞利波及其在裂缝处的散射波。根据模拟和实验结果,通过小波变换和Parseval定理获得了靠近阈值现象的裂缝深度和临界波长的斜率靠近4的曲线。基于这种关系,采用阈值现象因传输/反射瑞利波的能量变换而发生阈值现象的临界频率来确定子波长表面裂纹的尺寸。与理论分析一致的铝合金样本对铝合金试样的实验结果验证了基于激光超声波产生的宽带瑞利波的临界频率方法的有用性。

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