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Non-destructive imaging, characterization or measurement of thin items using laser-generated lamb waves

机译:使用激光产生的兰姆波对薄件进行无损成像,表征或测量

摘要

A laser-based ultrasonic technique for the inspection of thin plates and membranes employs an amplitude-modulated laser source to excite narrow bandwidth Lamb waves. The dominant feature in the acoustic spectrum is a sharp resonance peak that occurs at the minimum frequency of the first-order symmetric Lamb mode, where the group velocity of the Lamb wave goes to zero while the phase velocity remains finite. Experimental results with the laser source and receiver on epicenter demonstrate that the zero group velocity resonance generated with a low power modulated excitation source can be detected using an optical probe such as a Michelson interferometer coupled to a lock-in amplifier. This resonance peak is sensitive to the thickness and mechanical properties of plates and may be suitable, for example, for the measurement and mapping of nanoscale thickness variations.
机译:用于检查薄板和薄膜的基于激光的超声技术采用调幅激光源来激发窄带宽兰姆波。声谱的主要特征是在一阶对称Lamb模式的最小频率处出现一个尖锐的共振峰,其中Lamb波的群速度变为零而相速度保持有限。震源上的激光源和接收器的实验结果表明,可以使用光探头(例如与锁相放大器耦合的迈克尔逊干涉仪)检测由低功率调制激励源产生的零速度共振。该共振峰对板的厚度和机械性能敏感,并且可能例如适合于纳米级厚度变化的测量和标测。

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