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Combining Passive Thermography and Acoustic Emission for Large Area Fatigue Damage Growth Assessment of a Composite Structure

机译:结合被动热成像和声发射的复合结构大面积疲劳损伤生长评估

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Passive thermography and acoustic emission data were obtained for improved real time damage detection during fatigue loading. A strong positive correlation was demonstrated between acoustic energy event location and thermal heating, especially if the structure under load was nearing ultimate failure. An image processing routine was developed to map the acoustic emission data onto the thermal imagery. This required removing optical barrel distortion and angular rotation from the thermal data. The acoustic emission data were then mapped onto thermal data, revealing the cluster of acoustic emission event locations around the thermal signatures of interest. By combining both techniques, progression of damage growth is confirmed and areas of failure are identified. This technology provides improved real time inspections of advanced composite structures during fatigue testing.
机译:获得了被动热成像和声发射数据,以改善疲劳载荷期间的实时损伤检测。在声能事件的位置和热加热之间表现出很强的正相关性,特别是在载荷作用下的结构接近最终破坏的情况下。开发了图像处理程序以将声发射数据映射到热图像上。这需要从热数据中消除光学镜筒的变形和角度旋转。然后,将声发射数据映射到热数据上,以揭示感兴趣的热特征周围声发射事件位置的簇。通过将两种技术结合起来,可以确定损伤的增长过程并确定失效区域。这项技术可以在疲劳测试过程中改进对高级复合结构的实时检查。

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