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Development of rotational pulse-echo ultrasonic propagation imaging system capable of inspecting cylindrical specimens

机译:旋转脉冲回波超声波传播成像系统的开发能够检测圆柱标本

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A rotational pulse-echo ultrasonic propagation imager that can inspect cylindrical specimens for material nondestructive evaluations is proposed herein. In this system, a laser-generated ultrasonic bulk wave is used for inspection, which enables a clear visualization of subsurface defects with a precise reproduction of the damage shape and size. The ultrasonic waves are generated by a Q-switched laser that impinges on the outer surface of the specimen walls. The generated waves travel through the walls and their echo is detected by a Laser Doppler Vibrometer (LDV) at the same point. To obtain the optimal Signal-to-Noise Ratio (SNR) of the measured signal, the LDV requires the sensed surface to be at a right angle to the laser beam and at a predefined constant standoff distance from the laser head. For flat specimens, these constraints can be easily satisfied by performing a raster scan using a dual-axis linear stage. However, this arrangement cannot be used for cylindrical specimens owing to their curved nature. To inspect the cylindrical specimens, a circular scan technology is newly proposed for pulse-echo laser ultrasound. A rotational stage is coupled with a single-axis linear stage to inspect the desired area of the specimen. This system arrangement ensures that the standoff distance and beam incidence angle are maintained while the cylindrical specimen is being inspected. This enables the inspection of a curved specimen while maintaining the optimal SNR. The measurement result is displayed in parallel with the on-going inspection. The inspection data used in scanning are mapped from rotational coordinates to linear coordinates for visualization and post-processing of results. A graphical user interface software is implemented in C-Hk using a QT framework and controls all the individual blocks of the system and implements the necessary image processing, scan calculations, data acquisition, signal processing and result visualization.
机译:本文提出了一种旋转脉冲回波超声波传播成像仪,其可以检查用于材料无损评估的圆柱形样本。在该系统中,激光产生的超声波散装波用于检查,这使得能够明确可视化地下缺陷,其精确再现损坏形状和尺寸。超声波通过施加在样品壁的外表面上的Q开关激光器产生。产生的波穿过墙壁,并且它们的回声由同一点的激光多普勒振动计(LDV)检测。为了获得测量信号的最佳信噪比(SNR),LDV要求感测的表面与激光束的直角,并且处于与激光头的预定常见的支座距离处。对于平面样本,可以通过使用双轴线性级执行光栅扫描来容易满足这些约束。然而,由于其弯曲性质,这种布置不能用于圆柱形样本。为了检查圆柱形样品,新建循环扫描技术用于脉冲回波激光超声。旋转级与单轴线性级联接以检查样本的所需区域。该系统装置确保在检查圆柱形样品的同时保持支座距离和光束入射角。这使得能够在保持最佳SNR的同时检查弯曲标本。测量结果与正在进行的检查并行显示。扫描中使用的检查数据从旋转坐标映射到线性坐标,用于可视化和结果后处理。使用QT框架在C-HK中实现图形用户界面软件,并控制系统的所有单独块,并实现必要的图像处理,扫描计算,数据采集,信号处理和结果可视化。

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