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Reconstruction of Barely Visible Impact Damage in Composite Structures Based on Non-Destructive Evaluation Results

机译:基于无损评估结果的复合材料结构几乎可见的冲击损伤重建

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摘要

The occurrence of barely visible impact damage (BVID) in aircraft composite components and structures being in operation is a serious problem, which threatens structural safety of an aircraft, and should be timely detected and, if necessary, repaired according to the obligatory regulations of currently applied maintenance methodologies. Due to difficulties with a proper detection of such a type of damage even with non-destructive testing (NDT) methods as well as manual evaluation of the testing results, supporting algorithms for post-processing of these results seem to be of a high interest for aircraft maintenance community. In the following study, the authors proposed new approaches for BVID reconstruction based on results of ultrasonic and X-ray computed tomographic testing using authored advanced image processing algorithms. The studies were performed on real composite structures taking into consideration failure mechanisms occurring during impact damaging. The developed algorithms allow extracting relevant diagnostic information both from ultrasonic B-and C-Scans as well as from tomographic 3D arrays used for the validation of ultrasonic reconstructed damage locations, which allows for a significant improvement of the detectability of BVID in tested structures. The developed approach can be especially useful for NDT operators evaluating the results of structural NDT inspections.
机译:运行中的飞机复合材料部件和结构中几乎看不见的冲击损坏(BVID)的发生是一个严重的问题,它威胁到飞机的结构安全,应根据当前的强制性法规及时进​​行发现并在必要时进行维修。应用的维护方法。由于即使使用非破坏性测试(NDT)方法也无法正确检测到这种类型的损坏,并且难以人工评估测试结果,因此,对于这些结果的后处理支持算法似乎引起了人们的极大兴趣。飞机维修社区。在接下来的研究中,作者基于超声波和X射线计算机断层摄影测试的结果,提出了BVID重建的新方法,并使用了已开发的高级图像处理算法。研究是在考虑碰撞破坏过程中发生的破坏机制的基础上对真实的复合结构进行的。开发的算法允许从超声B扫描和C扫描以及用于验证超声重建损伤位置的X线断层扫描3D阵列中提取相关的诊断信息,从而可以大大提高BVID在测试结构中的可检测性。这种开发的方法对于NDT操作员评估结构NDT检查结果特别有用。

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