Accurate Depth Determination Of Defects In Composite Materials Using Pulsed Thermography

COMPOSITE STRUCTURES(2021)

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Abstract
The determination of defect depth is one of the important advantages of pulsed thermography. The existing methods for depth estimation in pulsed thermography are generally established based on the one-dimension heat conduction along the thickness of the sample. However, most of the methods neglect the effects of defect size and sample thickness, which induces additional systematic errors in depth estimation. In this study, simulations are conducted to demonstrate that the accuracy of depth determination of defects is greatly influenced by the defect size and sample thickness in some simulations. By establishing the relationship between the characteristic time and these factors, an accurate depth determination method based on the peak slope time is proposed. The proposed method has been applied to characterize the defect depths of a composite panel with flatbottomed holes. The experimental results show that the use of the proposed method is able to identify the depths of defects with high accuracy.
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Key words
Defect depth, Peak slope time method, Defect size, Sample thickness
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