首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Laser photoacoustic technique for ultrasonic surface acoustic wave velocity evaluation on porcelain
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Laser photoacoustic technique for ultrasonic surface acoustic wave velocity evaluation on porcelain

机译:激光光声技术在瓷器上超声表面声波速度评估

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摘要

A laser photoacoustic technique has been developed to evaluate the surface acoustic wave (SAW) velocity of porcelain. A Q-switched Nd:YAG laser at 1064 nm was focused by a cylindrical lens to initiate broadband SAW impulses, which were detected by an optical fiber interferometer with high spatial resolution. Multiple near-field surface acoustic waves were observed on the sample surface at various locations along the axis perpendicular to the laser line source as the detector moved away from the source in the same increments. The frequency spectrum and dispersion curves were obtained by operating on the recorded waveforms with cross-correlation and FFT. The SAW phase velocities of the porcelain of the same source are similar while they are different from those of different sources. The marked differences of Rayleigh phase velocities in our experiment suggest that this technique has the potential for porcelain identification.
机译:已经开发出一种激光光声技术来评估瓷器的表面声波(SAW)速度。用柱面透镜聚焦1064 nm的Q开关Nd:YAG激光,以引发宽带SAW脉冲,该脉冲由具有高空间分辨率的光纤干涉仪检测到。当检测器以相同的增量远离源时,在沿垂直于激光线源的轴的不同位置的样品表面上会观察到多个近场表面声波。通过互相关和FFT对记录的波形进行操作,可获得频谱和色散曲线。同一来源的瓷器的SAW相速度相似,但与不同来源的瓷器的SAW相速度不同。在我们的实验中,瑞利相速度的明显差异表明该技术具有用于瓷器鉴定的潜力。

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