Study on the detection of a cylindrical surface-breaking bore-hole reflector based on laser ultrasonic technology

Haitao Wang, W. Zeng, Xianming Yang, Guiyun Tian, R. Guo, G. Hu, M. Wan
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引用次数: 2

Abstract

In this paper, a visualization system was proposed based on ultrasound excitation from a Q-switched pulsed YAG laser. The ultrasonic wave was received by a piezoelectric transducer. The electrical time-domain signal was analyzed in the Fourier-domain in order to detect a hole-like reflector in an austenitic stainless steel specimen. At a given receiver position, a piezoelectric transducer received the ultrasonic wave signal. The electrical time-domain signal was analyzed in the Fourier-domain. The experimental research on the influence of the relative position distance between the laser excitation spot and the defect of the test specimen was conducted. The experimental results showed a significant geometrical imaging of the reflector shape with the scanned data. Therefore, a quantitative laser ultrasound visualization system was realized along with the spectral analysis. It will provide a new method of defects detection and sizing.
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基于激光超声技术的圆柱形破面钻孔反射器检测研究
本文提出了一种基于调q脉冲YAG激光器超声激发的可视化系统。超声波由压电换能器接收。为了检测奥氏体不锈钢样品中的类孔反射体,在傅里叶域对电时域信号进行了分析。在给定的接收器位置,一个压电换能器接收超声波信号。在傅里叶域对电时域信号进行分析。对激光激发光斑与试件缺陷相对位置距离的影响进行了实验研究。实验结果表明,反射镜形状与扫描数据有明显的几何成像。因此,在光谱分析的基础上,实现了定量激光超声可视化系统。这将为缺陷检测和评定提供一种新的方法。
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