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Defect visualization of aircraft UHF antenna radome using full-field pulse-echo ultrasonic propagation imaging system

机译:使用全场脉冲回波超声波传播成像系统缺陷飞机UHF天线云综的缺陷

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Most of aircraft antennas usually have various types of radome made of composite materials for protecting antenna structures. However, these antenna radome structures, which are installed on the outside of airplane, are easy to be damaged by external forces such as drag, foreign object, bird strike and others. In this study, full-field pulse-echo ultrasonic propagation imaging (PE UPI) system is proposed as the non-destructive inspection technique to visualize manufacturing defects in composite antenna radome. Based on the results of the sample case study, it is shown that the ultrasonic wave propagation imaging (UWPI) that is generated by the proposed full-field PE UPI system is able to highlight the intact internal condition of antenna structure and its defect area. Additional damage visualization techniques like ultrasonic energy mapping (UEM), variable time window amplitude map (VTWAM) and also ultrasonic spectral imaging (USI) algorithms are applied to improve the reliability of the damage visualization. It can be concluded that the proposed PE UPI system is an effective non-destructive inspection technique for the composite radome structures.
机译:大多数飞机天线通常具有由用于保护天线结构的复合材料制成的各种类型的弧度。然而,这些天线檐头结构安装在飞机的外部,易被外部力损坏,例如阻力,异物,鸟击等。在该研究中,提出了全场脉冲回波超声波传播成像(PEI UPI)系统作为非破坏性检查技术,以在复合天线氡气中可视化制造缺陷。基于样本案例研究的结果,显示由所提出的全场PE UPI系统产生的超声波传播成像(UWPI)能够突出天线结构的完整内部条件及其缺陷区域。额外的损伤可视化技术,如超声波能量映射(UEM),可变时窗幅度图(VTWAM)以及超声波谱成像(USI)算法应用于提高损伤可视化的可靠性。可以得出结论,所提出的PE UPI系统是复合弧度结构的有效的非破坏性检查技术。

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