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Nondestructive and electromagnetic evaluations of stealth structures damaged by lightning strike

机译:雷击损坏的隐形结构的无损和电磁评估

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Stealth technology is very important for the survival of military aircraft. A stealth aircraft structure has both electromagnetic and mechanical functions. Lightning can cause failure on both the points. In this study, we claim that the stealth structure should be evaluated nondestructively and electromagnetically, and we propose a method for full-field evaluations of both the functions. First, a radar absorbing structure was designed and fabricated with stealth capability in the X-band. The radar absorbing structure consisted of a carbon nanotube layer (glass/epoxy dispersed with multiwalled carbon nanotubes), a spacer layer (glass/epoxy) and a perfect electrical conductor layer. A lightning test was performed using an impulse current generator according to standard regulations. Then, nondestructive damage and electromagnetic performance evaluations were performed using a pulse-echo laser ultrasonic propagation imager and a scanning free-space measurement system, respectively. The results showed that neither structural damage nor changes in the electromagnetic properties were observed during the two evaluations. In general, the composites were severely damaged by lightning. However, it turned out that the radar absorbing structure with the carbon nanotube layer could prevent serious damage to stealth function as well as material damage owing to the high conductivity of the carbon nanotubes dispersed in its surface layer.
机译:隐身技术对于军机的生存非常重要。隐形飞机结构既具有电磁功能又具有机械功能。雷电可能会导致两点故障。在这项研究中,我们要求隐身结构应该无损和电磁地评估,并且我们提出了一种对这两种功能进行全场评估的方法。首先,设计并制造了具有X波段隐身能力的雷达吸收结构。雷达吸收结构由碳纳米管层(玻璃/环氧树脂分散有多壁碳纳米管),间隔层(玻璃/环氧树脂)和理想的电导体层组成。根据标准规定,使用脉冲电流发生器进行了雷电测试。然后,分别使用脉冲回波激光超声传播成像仪和扫描自由空间测量系统进行无损破坏和电磁性能评估。结果表明,在两次评估中均未观察到结构破坏或电磁性能的变化。通常,复合材料被雷击严重损坏。然而,事实证明,由于分散在其表面层中的碳纳米管的高电导率,具有碳纳米管层的雷达吸收结构可以防止对隐形功能的严重损害以及材料损害。

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