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Liquid Nitrogen Cooling in IR Thermography applied to steel specimen

机译:红外热成像中的液氮冷却技术应用于钢试样

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Pulsed Thermography (PT) is one of the most common methods in Active Thermography procedures of the Thermography for NDT & E (Nondestructive Testing & Evaluation), due to the rapidity and convenience of this inspection technique. Flashes or lamps are often used to heat the samples in the traditional PT. This paper mainly explores exactly the opposite external stimulation in IR Thermography: cooling instead of heating. A steel sample with flat-bottom holes of different depths and sizes has been tested. Liquid nitrogen (LN_2) is sprinkled on the surface of the specimen and the whole process is captured by a thermal camera. To obtain a good comparison, two other classic NDT techniques, Pulsed Thermography and Lock-In Thermography, are also employed. In particular, the Lock-in method is implemented with three different frequencies. In the image processing procedure, the Principal Component Thermography (PCT) method has been performed on all thermal images. For Lock-In results, both Phase and Amplitude images are generated by Fast Fourier Transform (FFT). Results show that all techniques presented part of the defects while the LN_2 technique displays the flaws only at the beginning of the test. Moreover, a binary threshold post-processing is applied to the thermal images, and by comparing these images to a binary map of the location of the defects, the corresponding Receiver Operating Characteristic (ROC) curves are established and discussed. A comparison of the results indicates that the better ROC curve is obtained using the Flash technique with PCT processing method.
机译:由于这种检测技术的快速性和便利性,脉冲热成像(PT)是NDT和E(无损检测与评估)热成像主动热成像程序中最常用的方法之一。传统PT中经常使用闪光灯或灯来加热样品。本文主要探讨与红外热成像技术完全相反的外部刺激:冷却而不是加热。已测试了具有不同深度和尺寸的平底孔的钢样品。液氮(LN_2)洒在样品表面,整个过程由热像仪捕获。为了获得良好的比较,还采用了另外两种经典的NDT技术:脉冲热成像和锁定热成像。特别地,锁定方法以三个不同的频率实现。在图像处理过程中,已对所有热图像执行了主成分热成像(PCT)方法。对于锁定结果,相位和幅度图像均通过快速傅立叶变换(FFT)生成。结果表明,所有技术均表现出部分缺陷,而LN_2技术仅在测试开始时才显示缺陷。此外,将二进制阈值后处理应用于热图像,然后通过将这些图像与缺陷位置的二进制图进行比较,建立并讨论相应的接收器工作特性(ROC)曲线。结果的比较表明,使用Flash技术和PCT处理方法可获得更好的ROC曲线。

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