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Laser active thermography for non-destructive testing

机译:激光有源热成像,用于非破坏性测试

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Thermography methods have found their applications in different fields of human activity. The non-destructive feature of these methods along with the additional advantage by automated remote control and tests of nuclear installations without personnel attendance in the contaminated zone are of particular interest. Laser active pyrometry and laser lock-in thermography for in situ non-destructive characterization of micrometric layers on graphite substrates from European tokamaks were under extensive experimental and theoretical studies in CEA (France). The studies were aimed to obtain layer characterization with cross-checking the layer thermal contact coefficients determined by active laser pyrometry and lock-in thermography. The experimental installation comprised a Nd-YAG pulsed repetition rate laser (1 Hz - 10 kHz repetition rate frequency, homogeneous spot) and a home-made pyrometer system based on two pyrometers for the temperature measurements in 500 - 2600 K range. For both methods, the layer characterization was provided by the best fit of the experimental results and simulations. The layer thermal contact coefficients determined by both methods were quite comparable. Though there was no gain in the measurements accuracy, lock-in measurements have proved their advantage as being much more rapid. The obtained experimental and theoretical results are presented. Some practical applications and possible improvements of the methods are discussed.
机译:热成像方法已在人类活动的不同领域发现它们的应用。这些方法的非破坏性特征以及自动遥控器的额外优势以及污染区域的人员出勤的核设施的额外优势特别感兴趣。激光活性高温测定和激光锁定热成像,用于来自欧洲Tokamaks的石墨基材上的微米层的非破坏性表征是在CEA(法国)的广泛实验和理论研究中。这些研究旨在通过交叉检查通过主动激光热测定和锁定热成像确定的层热接触系数来获得层表征。实验装置包括ND-YAG脉冲重复率激光器(1 Hz-10 kHz重复率频率,均匀的点)和基于两个高温计的自制高温计系统,用于500-2600克范围内的温度测量。对于这两种方法,通过实验结果和模拟的最佳拟合提供了层表征。两种方法确定的层热触点系数非常可比。虽然测量准确性没有收益,但锁定测量已经证明了它们的优势,因为更快速。提出了所获得的实验和理论结果。讨论了一些实际应用和可能的方法的改进。

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