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In situ non-destructive evaluation of an aircraft UHF antenna radome based on pulse-echo ultrasonic propagation imaging

机译:基于脉冲回波超声传播成像的飞机UHF天线天线罩的原位无损评估

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摘要

Most aircraft antennas are protected by radomes made of composite materials. However, antenna radome structures are easily damaged by external forces and internal manufacturing defects. To detect damage in the composite antenna radomes while in service, a full-field pulse-echo ultrasonic propagation imaging (PE UPI) system is proposed as an in situ non-destructive inspection technique, which is mobile inside a hangar. The radome is generally a double-curvature structure, and thus, a curvature compensation algorithm is also developed to increase damage visibility. The proposed hardware and software have been tested by detecting a resin rich region formed between the E-glass/epoxy plies. To visualize the damage, PE ultrasonic wave propagation imaging has been performed, and ultrasonic energy mapping has also been applied. A curvature compensating algorithm has been newly developed and compared for its performance in damage visibility improvement. To verify the size of the real defects of a UHF antenna radome, destructive testing has been performed by cutting the defect area, polishing the cross section and investigating the section using a 50x microscope. The results have shown the feasibility of the proposed PE UPI system and the inspection strategy as an in situ non-destructive evaluation technique for radome structures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大多数飞机天线都受到复合材料制成的天线罩的保护。但是,天线天线罩结构容易受到外力和内部制造缺陷的破坏。为了在使用中检测复合天线天线罩中的损坏,提出了一种全场脉冲回波超声传播成像(PE UPI)系统作为可在机库内部移动的原位无损检测技术。天线罩通常是双曲率结构,因此,还开发了曲率补偿算法来增加损伤的可见性。通过检测在E玻璃/环氧树脂层之间形成的富含树脂的区域,对建议的硬件和软件进行了测试。为了可视化损坏,已经执行了PE超声波传播成像,并且还应用了超声波能量映射。新开发了一种曲率补偿算法,并比较了其在损伤可见性改善方面的性能。为了验证UHF天线天线罩的实际缺陷的大小,已经进行了破坏性测试,方法是切割缺陷区域,抛光横截面并使用50x显微镜研究该横截面。结果表明,所提出的PE UPI系统的可行性和检查策略作为天线罩结构的原位无损评估技术。 (C)2016 Elsevier Ltd.保留所有权利。

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