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Design of a system for Aircraft Fuselage Inspection

机译:飞机机身检验系统设计

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The average age of commercial aircraft operating domestic flights in the United States is 10.7 years and continues to increase. Advances in robotics and imaging technologies show potential to reduce costs, time and to improve quality of fuselage inspections. A stochastic simulation was developed to evaluate the inspection process. The simulation represents differences in inspection techniques for components of the aircraft, such as the landing gear compared to the lap-splice panels, by categorizing the aircraft with ten representative regions. Simulation results indicates a decrease in the time required to complete inspection while simultaneously improving the overall quality in crack detection by the use of emerging non-destructive inspection technologies in aircraft maintenance: non-contact laser-ultrasonic (average savings of 43.28 minutes per section per inspection), synthetic aperture imaging drone (average savings of 45.60 minutes), and thermographic robotic crawler (crack detection rate increase of 54% with an average increase of 26.86 minutes per section). Using a utility hierarchy focused on performance, safety, and ability to implement, the most viable technological alternatives rank: non-contact laser-ultrasonic with a utility value of 0.824, human inspector with a utility of 0.811, synthetic aperture imaging with a utility of 0.783, and thermographic robotic crawler with a utility of 0.748. Based on the simulation results and utility analysis, it is recommended that MRO facilities implement non-contact laser ultrasonic technology as a method to scan the exterior of their aircraft to detect widespread fatigue damage.
机译:在美国国内航班运营的商用飞机的平均年龄是10.7年,并继续增加。机器人和成像技术的进步表明,降低成本,时间和提高机身检查质量的潜力。开发了一种随机仿真来评估检查过程。该模拟代表了飞机的部件的检查技术的差异,例如与搭接拼接面板相比的着陆齿轮,通过将飞机分类为具有十个代表性区域。仿真结果表明,通过在飞机维护中使用新出现的非破坏性检测技术同时提高裂纹检测的整体质量所需的时间减少:非接触式激光超声(平均节省43.28分钟的平均节省43.28分钟检查),合成孔径成像无人机(平均节省45.60分钟),以及热原子接机组织爬网(裂纹检测率增加54%,平均同比增加26.86分钟)。使用专注于性能,安全性和实施能力的实用层次结构,最可行的技术替代品等级:非接触式激光超声波,效用值0.824,人类检查员具有0.811的效用,合成孔径成像具有效用0.783,以及具有0.748的效用的热选杆机械手履带。基于仿真结果和公用事业分析,建议MRO设施实现非接触式激光超声技术作为扫描其飞机外部以检测普遍疲劳损坏的方法。

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