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A laser/EMAT system for thickness monitoring applications using shear and L-S mode-converted waves

机译:激光/ EMAT系统,用于使用剪切和L-S模式转换波的厚度监测应用

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摘要

A laser/EMAT system is described for non-contact monitoring of metal thickness. In a B-scan imaging configuration, quantitative time-of-flight analysis of laser-generated shear waves and longitudinal-shear mode-converted waves can be used as an effective method for thickness monitoring. Q-switched Nd:YAG laser pulses with energies of 18 ml were delivered to the material surface via an optical fibre and focused to a line source by a cylindrical lens. Transient acoustic waves propagated through the plate to be reflected from the far surface. Waves returning to the surface, including L-S mode-converted waves, were detected using an EMAT sensitive to in-plane motion. B-scans were generated as the sensor head was moved along the material's surface, forming a 2D intensity profile that made changes in plate thickness easy to visualize. The L-S and S-L mode-converted waves provided a method of simultaneously monitoring two different points on the far surface, enabling any changes in the material thickness to be clearly identified.
机译:描述了用于金属厚度的非接触监测的激光/ EMAT系统。在B扫描成像配置中,可以将对激光产生的剪切波和纵向剪切模式转换波的定量飞行时间分析用作厚度监测的有效方法。能量为18 ml的Q开关Nd:YAG激光脉冲通过光纤传输到材料表面,并通过圆柱透镜聚焦到线源。瞬态声波通过板传播并从远表面反射。使用对平面内运动敏感的EMAT可以检测到返回到地面的波,包括经L-S模式转换的波。 B扫描是在传感器头沿材料表面移动时产生的,从而形成2D强度分布,使板厚度的变化易于观察。 L-S和S-L模式转换的波提供了一种同时监视远表面上两个不同点的方法,从而可以清楚地识别出材料厚度的任何变化。

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