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Quantitative Pulsed Phase Thermography Applied to Steel Plates

机译:定量脉冲相热成像技术在钢板上的应用

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Pulsed Phase Thermography (PPT) has been proven effective on depth retrieval of flat-bottomed holes in different materials such as plastics and aluminum. In PPT, amplitude and phase delay signatures are available following data acquisition (carried out in a similar way as in classical Pulsed Thermography), by applying a transformation algorithm such as the Fourier Transform (FT) on thermal profiles. The authors have recently presented an extended review on PPT theory, including a new inversion technique for depth retrieval by correlating the depth with the blind frequency f_b (frequency at which a defect produce enough phase contrast to be detected). An automatic defect depth retrieval algorithm had also been proposed, evidencing PPT capabilities as a practical inversion technique. In addition, the use of normalized parameters to account for defect size variation as well as depth retrieval from complex shape composites (GFRP and CFRP) are currently under investigation. In this paper, steel plates containing flat-bottomed holes at different depths (from 1 to 4.5 mm) are tested by quantitative PPT. Least squares regression results show excellent agreement between depth and the inverse square root blind frequency, which can be used for depth inversion. Experimental results on steel plates with simulated corrosion are presented as well. It is worth noting that results are improved by performing PPT on reconstructed (synthetic) rather than on raw thermal data.
机译:脉冲相热成像(PPT)已被证明可以有效地恢复塑料和铝等不同材料中的平底孔的深度。在PPT中,通过在热剖面上应用诸如傅立叶变换(FT)之类的变换算法,可以在数据采集之后以与传统脉冲热成像法类似的方式获得幅度和相位延迟签名。作者最近提出了对PPT理论的扩展评论,包括一种通过将深度与盲频f_b(缺陷产生足够的相位对比度以检测到的频率)相关联来进行深度检索的新反演技术。还提出了一种自动缺陷深度检索算法,该算法证明了PPT功能是一种实用的反演技术。此外,目前正在研究使用归一化参数来解决缺陷尺寸变化以及从复杂形状复合材料(GFRP和CFRP)中检索深度的问题。在本文中,通过定量PPT对包含不同深度(从1到4.5 mm)的平底孔的钢板进行了测试。最小二乘回归结果显示深度与平方根平方根的盲频之间有极好的一致性,可用于深度反演。还给出了在模拟腐蚀的钢板上的实验结果。值得注意的是,通过对重构(合成)而不是原始热数据执行PPT可以改善结果。

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