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Strain and damage monitoring in solar-powered aircraft composite wing using fiber Bragg grating sensors

机译:使用光纤布拉格光栅传感器监测太阳能飞机复合机翼的应变和损坏

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A solar powered aircraft is operated by converting solar energy into electrical energy. The wing of the solar powered aircraft requires a wide area to attach a number of solar cells in order to collect a large amount of solar energy. But the structural deformation and damage of the aircraft wing may occur because of bending and torsional loads induced by aerodynamic force during the operation. Therefore, the structural health monitoring of the wing is needed for increasing the operating time of the aircraft. In this study, the strain and damage of a composite wing of a solar powered aircraft were monitored by using fiber optic sensors until failure occurrence. In detail, a static loading experiment was performed on the composite wing with a length of 3.465m under a solar simulation environment, and the strain and acoustic emission (AE) of fracture signal were monitored by using fiber Bragg grating (FBG) sensors. In the results of the structural experiment, the damage occurred at a stringer when 4.5G load was applied to the composite wing, and the strain variations and AE signals were successfully measured by using FBG sensors. As a result, it is verified that the damage occurrence and location could be estimated by analyzing the strain variations and AE signals, and the fiber optic sensor would be a good transducer to monitor the structural status of a solar powered aircraft.
机译:通过将太阳能转换成电能来操作太阳能飞机。太阳能飞行器的机翼需要宽阔的区域以连接多个太阳能电池,以收集大量的太阳能。但是由于在运行过程中由空气动力引起的弯曲和扭转载荷可能会导致飞机机翼的结构变形和损坏。因此,机翼的结构健康监测需要增加飞机的运行时间。在这项研究中,通过使用光纤传感器监测太阳能飞机复合机翼的应变和损坏,直到出现故障为止。详细地,在太阳模拟环境下对长度为3.465m的复合材料机翼进行了静态载荷实验,并使用光纤布拉格光栅(FBG)传感器监测了断裂信号的应变和声发射(AE)。在结构实验的结果中,当在复合机翼上施加4.5G载荷时,在纵梁上发生了损伤,并且使用FBG传感器成功测量了应变变化和AE信号。结果,验证了可以通过分析应变变化和AE信号来估计损坏的发生和位置,并且光​​纤传感器将是监测太阳能飞机结构状态的良好传感器。

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