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Passive Defect Detection and Imaging in Structures by Cross-correlations of Infrared Thermography Measurements

机译:通过红外热成像测量的互相关方法在结构中的被动缺陷检测和成像

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Infrared Thermography (IT) is one of the most common techniques employed for Non-Destructive Evaluation (NDE) of structures, particularly due to its wide area coverage and imaging potentials. Its drawbacks, as the need of a powerful heat source and set-up, could be overcome if applying the technique in a passive mode. In this work, the feasibility for passive Green's function retrieval from diffuse thermal field is investigated. Relying on some wave propagation aspects, it is proven that a thermal Green's function can be reconstructed using long-time cross-correlations of temperature time histories, recorded from an IR camera. The random thermal fluctuations of the structure would still contain information related to the heat propagation path and hence could be exploited to detect anomalies. A successful application of this concept would allow defect detection and imaging, avoiding external sources This technique has been already applied in many other environments, as seismology, oceanography and structural health monitoring, relying on acoustic wave fields. In the thermal case, the exploitation of the already available 2D pixel grid resolution as a large temperature array would also allow beamforming, due to its large aperture. This paper will discuss the feasibility of passive thermography and present ongoing studies in aluminum and composite plates with engineered defects.
机译:红外热成像(IT)是用于结构的非破坏性评估(NDE)的最常见技术之一,特别是由于其广泛的面积覆盖和成像电位。如果在被动模式应用技术,可以克服作为需要强大的热源和设置的缺点。在这项工作中,研究了被动绿色功能检索的可行性,从漫反射导热场进行。依赖于一些波传播方面,证明可以使用从IR相机记录的温度时间历史的长时间互相关来重建热绿色的功能。结构的随机热波动仍然包含与热传播路径有关的信息,因此可以利用以检测异常。该概念的成功应用将允许缺陷检测和成像,避免外部来源,这种技术已经应用于许多其他环境,作为地震学,海洋学和结构健康监测,依赖于声波场。在热壳中,由于其大的孔径,已经可用的2D像素网格分辨率的开发也将允许波束形成。本文将讨论被动热成像的可行性,并通过工程缺陷展示铝和复合板的持续研究。

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