首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Experimental Study on the Detection of Surface-Breaking Defects on Metal with the Scanning Laser Line Source Technique
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Experimental Study on the Detection of Surface-Breaking Defects on Metal with the Scanning Laser Line Source Technique

机译:扫描激光线源技术检测金属表面缺陷的实验研究

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The scanning laser line source (SLLS) technique is a novel laser-based inspection method for the ultrasonic detection of small surface-breaking defects. The SLLS approach is based on monitoring the change in laser generated ultrasound as a laser line source is scanning over a defect. It has provided enhanced signal-to-noise performance compared to the traditional pitch-catch or pulse-echo ultrasonic methods. In this paper, an experimental method is presented to detect surface acoustic waves (SAW) with polyvinylindene fluoride(PVDF) transducer. The ultrasonic signal is converted into electric signal by piezoelectricity of the PVDF, which is attached to a micro-knife edge clamped on a metal device. The SAW are excited by employing a pulsed Nd:YAG laser on aluminum plate with artificial surface-breaking defects. The laser line source is accurately shifted by the motorized translation stage, while the PVDF is located at a fixed position on the specimen. When the laser line source is scanning over the defect, the ultrasonic signals are monitored, meanwhile the characteristic changes in the amplitude and frequency content are observed. Consequently, the position of the defect can be determined by analyzing the obtained signals. The experimental system with high sensitivity provides a detection method of small surface-breaking defects on metal and gives convincing experimental evidence for the interaction mechanism between the SAW and the surface-breaking defects.
机译:扫描激光线源(SLLS)技术是一种基于激光的新颖检查方法,用于超声波检测较小的表面缺陷。 SLLS方法基于监视激光产生的超声的变化,因为激光线源正在扫描缺陷。与传统的音高捕获或脉冲回波超声方法相比,它提供了增强的信噪比性能。本文提出了一种利用聚偏二氟乙烯(PVDF)换能器检测表面声波(SAW)的实验方法。超声信号通过PVDF的压电转换为电信号,该PVDF附着在固定在金属设备上的微刀边缘上。通过在具有人造表面破裂缺陷的铝板上使用脉冲Nd:YAG激光来激发声表面波。激光线源通过电动平移台精确移动,而PVDF位于样品上的固定位置。当激光线源扫描缺陷时,将监视超声波信号,同时观察振幅和频率含量的特征变化。因此,可以通过分析获得的信号来确定缺陷的位置。高灵敏度的实验系统为金属表面缺陷的检测提供了一种方法,并为表面声波与表面缺陷的相互作用机理提供了令人信服的实验证据。

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