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Post-Impact Fatigue Damage Monitoring Using Fiber Bragg Grating Sensors

机译:使用光纤布拉格光栅传感器对冲击后疲劳损伤进行监测

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摘要

It has been shown that impact damage to composite materials can be revealed by embedded Fiber Bragg Gratings (FBG) as a broadening and splitting of the latter's characteristic narrow peak reflected spectrum. The current work further subjected the impact damaged composite to cyclic loading and found that the FBG spectrum gradually submerged into a rise of background intensity as internal damages progressed. By skipping the impact, directing the impact to positions away from the FBG and examining the extracted fibers, we concluded that the above change is not a result of deterioration/damage of the sensor. It is caused solely by the damages initiated in the composite by the impact and aggravated by fatigue loading. Evolution of the grating spectrum may therefore be used to monitor qualitatively the development of the incurred damages.
机译:已经表明,嵌入式光纤布拉格光栅(FBG)可以揭示复合材料的冲击损伤,这是后者的特征性窄峰反射光谱的扩展和分裂。当前的工作进一步使受冲击破坏的复合材料经受周期性载荷,并发现随着内部破坏的进行,FBG光谱逐渐淹没到背景强度的升高中。通过跳过冲击,将冲击定向到远离FBG的位置并检查提取的光纤,我们得出结论,上述变化不是传感器损坏/损坏的结果。它完全是由复合材料的冲击引起的,并由于疲劳载荷而加剧。光栅光谱的演变因此可以被用来定性地监测所引起的损害的发展。

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