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Matched excitation energy comparison of the pulse and lock-in thermography NDE techniques

机译:脉冲热成像和锁定热成像NDE技术的匹配激发能比较

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摘要

The defect detection capabilities of pulse transient thermography and lock-in thermography were compared using equal excitation energies. A signal-to-noise ratio analysis was performed on defect images obtained by the two techniques. The test piece imaged by both techniques was a carbon fibre composite plate containing back-drilled flat-bottomed hole artificial defects of 4, 6 and 12 mm diameters at depths ranging from 0.25 to 3.5 mm. Similar limits of defect detection were found for the two techniques. Lock-in thermography phase images were found to exhibit anomalous switches between positive and negative phase values for different modulation frequencies and for different combinations of defect diameter and depth. This effect resulted in values of defect phase response that differed substantially from the one-dimensional thermal wave interpretation of lock-in thermography imaging. The consequences of this anomalous effect and its physical origins are discussed.
机译:使用相等的激发能量比较了脉冲瞬态热成像和锁定热成像的缺陷检测能力。对通过两种技术获得的缺陷图像进行信噪比分析。通过这两种技术成像的测试件是碳纤维复合板,其中包含直径为4、6和12毫米,深度为0.25到3.5毫米的反钻平底孔人工缺陷。对于这两种技术,发现缺陷的限制相似。对于不同的调制频率以及缺陷直径和深度的不同组合,锁定热成像相位图像显示出在正负相位值之间的异常切换。这种影响导致缺陷相位响应的值与锁定式热成像的一维热波解释大不相同。讨论了这种异常效应的后果及其物理起源。

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