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Advanced Image Processing for Defect Visualization in Infrared Thermography

机译:红外热像仪中缺陷可视化的高级图像处理

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摘要

Results of a defect visualization process based on pulse infrared thermography are presented. Algorithms have been developed to reduce the amount of operator participation required in the process of interpreting thermographic images. The algorithms determine the defect's depth and size from the temporal and spatial thermal distributions that exist on the surface of the investigated object following thermal excitation. A comparison of the results from thermal contrast, time derivative, and phase analysis methods for defect visualization are presented. These comparisons are based on three dimensional simulations of a test case representing a plate with multiple delaminations. Comparisons are also based on experimental data obtained from a specimen with flat bottom holes and a composite panel with delaminations.
机译:提出了基于脉冲红外热成像的缺陷可视化过程的结果。已经开发出减少在解释热成像图像的过程中所需的操作员参与量的算法。该算法根据热激发后存在于被调查对象表面上的时间和空间热分布来确定缺陷的深度和大小。给出了热对比度,时间导数和用于缺陷可视化的相位分析方法的结果的比较。这些比较基于测试案例的三维模拟,该案例代表了具有多个分层的板。比较也基于从具有平底孔的样品和具有分层的复合板获得的实验数据。

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