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Radome Inspection based on Ultrasonic Frequency Tomography and Ultrasonic Energy Propagation Imaging

机译:基于超声波频率断层扫描和超声波能量传播成像的radome检测

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A focusing-free ultrasonic imaging system for in-situ ground structural health monitoring (SHM) was developed using a Q-switched laser and a 2D laser mirror scanner. Two imaging methods, i.e. a frequency-selectable Ultrasonic Energy Propagation Imaging (UEPI) and Ultrasonic Frequency Tomography (UFT) methods were included. The UEPI result movie could be seen as ultrasonic energy wavefront emerging from the sensing location with concentrated energy at structural damages. The UFT generates tomograms that show different frequency components of the ultrasonic waves. Structural damages could be seen in the tomograms as high ultrasonic energy concentrated at the locations of damages. Synthesizing the UEPI and UFT could generate results with optimized frequency and dramatically improve the damage evaluation capability of the system. As demonstration, a fighter jet pod quartz/epoxy radome with honeycomb core was inspected. A 5.42J impact damage of 25mm diameter was successfully evaluated using UEPI and UFT. Improved UEPI result using synthesized UFT and UEPI shows exclusive high energy concentration at an area of which size and location agreed well with the impact damage. In conclusion, this imaging system is a robust in-situ ground SHM system suitable for complex and demanding structures.
机译:使用Q开关激光器和2D激光镜扫描仪开发出用于原位地面结构健康监测(SHM)的无聚焦成像系统。包括两个成像方法,即频率可选择的超声能量传播成像(UEPI)和超声波频率断层扫描(UFT)方法。 UEPI结果电影可以被视为超声能量波前从感应位置出现,具有集中的能量在结构损坏。 UFT产生断层图像,显示超声波的不同频率分量。在断层图像中可以看到结构损坏,因为高度超声能量集中在损坏的位置。合成UEPI和UFT可以通过优化的频率产生结果,并显着提高系统的损伤评估能力。作为演示,检查了一种带蜂窝核心的战斗机喷射荚石英/环氧radome。使用UEPI和UFT成功评估了5.42J的撞击损伤25mm。使用合成的UFT和UEPI改进了UEPI结果,在尺寸和位置与冲击损伤很好地相同的区域中显示专属高能量集中。总之,该成像系统是一种适用于复杂和苛刻结构的稳健的原位地SHM系统。

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