Inspection of Aircraft Engine Components Using Induction Thermography

M. Genest, Gang Li
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引用次数: 3

Abstract

Induction thermography technique is assessed experimentally on aircraft engine parts with fatigue cracks using a three-loop coil. Results show that induction thermography can detect cracks in engine parts, with inspection time of less than 1 s. Coating surface to increase the part emissivity improved the signal to noise ratio but was not necessary for the crack detection. Despite high local heat gradient resulting from the parts' edges, cracks were still detectable. This edge effect introduced more challenges to detect short cracks. Relatively, longer cracks were easier to detect. The optimal observation time, in the experiments, was between 0.1 s and 0.25 s. Inspection of the engine disc with complex geometry was feasible using the induction thermography technique. However, in this case only some of the cracks were detected. Similar findings were also obtained from the 3D multiphysics finite element modelling.
用感应热成像法检查飞机发动机部件
利用三环线圈对飞机发动机疲劳裂纹部件进行了感应热成像技术的实验研究。结果表明,感应热像仪可以检测到发动机零件的裂纹,检测时间小于1 s。涂层表面提高零件发射率提高了信噪比,但对裂纹检测不是必需的。尽管零件边缘产生了很高的局部热梯度,但仍然可以检测到裂纹。这种边缘效应给检测短裂纹带来了更多挑战。相对而言,较长的裂缝更容易被发现。在实验中,最佳观察时间在0.1 ~ 0.25 s之间。采用感应热成像技术对具有复杂几何形状的发动机盘片进行检测是可行的。然而,在这种情况下,只检测到一些裂缝。类似的结果也得到了三维多物理场有限元建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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