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Pulse Phase Thermography for Defect Detection and Visualization

机译:脉冲相位热成像技术用于缺陷检测和可视化

摘要

Pulse Phase Thermography (PPT) has been reported as a novel powerful technique of the thermal NDE. It employs application of the Discrete Fourier Transform (DFT) to thermal images obtained following flash heating of the front surface of a specimen. The computed phasegrams are excellent for defect visualization in a wide range of materials. This is in part due to their low sensitivity to uneven heating. This work is an attempt to analyze advantages and limitations of PPT. Results of application of the DFT to simulated temperature decays are presented. The temperature evolution on a surface has been simulated based on an analytical solution of the one-dimensional heat diffusion problem. A more sophisticated study has been done for different sizes of defects using numerical solution of the three-dimensional mathematical model. Capabilities of PPT for in-depth scanning and for monitoring of the material loss are discussed. The recommendations for the practical application of the PPT are presented. Experimental results obtained following these recommendations are reported.
机译:脉冲相热成像(PPT)已被报道为一种新型的强大的热NDE技术。它采用了离散傅里叶变换(DFT)来对样品前表面进行快速加热后获得的热图像。计算出的相位图非常适合用于各种材料的缺陷可视化。部分原因是它们对不均匀加热的敏感性低。这项工作是试图分析PPT的优点和局限性。给出了将DFT应用于模拟温度衰减的结果。基于一维热扩散问题的解析解,已经模拟了表面温度的演变。使用三维数学模型的数值解决方案,已经针对不同尺寸的缺陷进行了更复杂的研究。讨论了PPT进行深度扫描和监视材料损失的功能。提出了有关PPT实际应用的建议。报告了遵循这些建议获得的实验结果。

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