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首页> 外文期刊>Journal of Nondestructive Evaluation >Advanced Image-Processing Techniques for Automatic Nondestructive Evaluation of Adhesively-Bonded Structures Using Speckle Interferometry
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Advanced Image-Processing Techniques for Automatic Nondestructive Evaluation of Adhesively-Bonded Structures Using Speckle Interferometry

机译:使用散斑干涉测量法自动非破坏性评估的先进的图像处理技术

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In conventional optical nondestructive evaluation (NDE) of structures using shearography or electronic speckle pattern interferometry (ESPI), results are typically provided in the form of fringe patterns or deformation contour plots. However, in order to fully automate the process of defect detection, it is desirable to obtain simpler results which are easier to interpret. We present here one such optical system based on additive-subtractive shearography/ESPI. This system processes additive-subtractive fringe patterns and provides the sizes and locations of defects such as disbonds in adhesively-bonded composite structures. This is achieved by exciting the structure under inspection using an acoustic stressing mechanism which sweeps a range of vibration frequencies of the structure. Since the defective areas of the structure have different mechanical properties from their neighboring regions, varying and complex fringe patterns are obtained at different stressing frequencies. We propose an algorithm which enables the automatic identification and selection of relevant additive-subtractive fringe patterns that pertain only to localized defonnations associated with defects, and which excludes images that pertain to any overall modes of the entire structure. The algorithm also includes a pixel-by-pixel adjustable thresholding scheme which compensates for intensity variations due to nommifomi reflectivity from unpainted and dirty test objects. Morphological processing is then performed to extract the shapes of the defect from the processed fringe clusters. Various structures, from simple aluminum specimens with simulated defects to a complex honeycomb-based aviation repair patch specimen, have been successfully evaluated using this system.
机译:在使用Shearography或电子散斑图案干涉法(ESPI)的结构的传统光学非破坏性评估(NDE)中,通常以条纹图案或变形轮廓图的形式提供结果。然而,为了完全自动化缺陷检测过程,期望获得更容易解释的更简单的结果。我们在此提供一种基于添加剂减法的沉焦/ ESPI这样的这种光学系统。该系统处理添加剂减量条纹图案,并提供诸如粘合复合结构中的缺陷的尺寸和位置。这是通过使用扫描结构的振动频率范围的声学应力机构激发检查下的结构来实现的。由于结构的缺陷区域具有来自其相邻区域的不同机械性能,因此在不同的应力频率下获得不同和复杂的边缘图案。我们提出了一种算法,该算法能够自动识别和选择相关的添加剂 - 减法条纹图案,其仅涉及与缺陷相关的局部定义,并且排除了与整个结构的任何整体模式相关的图像。该算法还包括像素的逐像素可调阈值方案,其补偿来自来自未涂覆和脏测试对象的NOMMIFI反射率引起的强度变化。然后进行形态学处理以从加工的边缘簇中提取缺陷的形状。使用该系统成功地评估了从具有模拟缺陷的简单铝样品的各种结构已成功评估了复杂的蜂窝的航空修复贴片标本。

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