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Thermographic detection of internal defects using 2D photothermal super resolution reconstruction with sequential laser heating

机译:使用二维光热超分辨率重建和连续激光加热对内部缺陷进行热成像检测

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摘要

Thermographic photothermal super resolution reconstruction enables the resolution of internal defects/inhomogeneities below the classical limit, which is governed by the diffusion properties of thermal wave propagation. Based on a combination of the application of special sampling strategies and a subsequent numerical optimization step in post-processing, thermographic super resolution has already proven to be superior to standard thermographic methods in the detection of one-dimensional defect/inhomogeneity structures. In our work, we report an extension of the capabilities of the method for efficient detection and resolution of defect cross sections with fully two-dimensional structured laser-based heating. The reconstruction is carried out using one of two different algorithms that are proposed within this work. Both algorithms utilize the combination of several coherent measurements using convex optimization and exploit the sparse nature of defects/inhomogeneities as is typical for most nondestructive testing scenarios. Finally, the performance of each algorithm is rated on reconstruction quality and algorithmic complexity. The presented experimental approach is based on repeated spatially structured heating by a high power laser. As a result, a two-dimensional sparse defect/inhomogeneity map can be obtained. In addition, the obtained results are compared with those of conventional thermographic inspection methods that make use of homogeneous illumination. Due to the sparse nature of the reconstructed defect/inhomogeneity map, this comparison is performed qualitatively. nbsp;(C) 2022 Author(s).All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY)license (http://creativecommons.org/licenses/by/4.0/).
机译:热成像光热超分辨率重建能够将内部缺陷/不均匀性分辨率降低到经典极限以下,这由热波传播的扩散特性控制。基于特殊采样策略的应用和后处理中后续的数值优化步骤的结合,热成像超分辨率已被证明在检测一维缺陷/不均匀性结构方面优于标准热成像方法。在我们的工作中,我们报告了该方法通过基于全二维结构激光的加热有效检测和解决缺陷横截面的能力的扩展。重建是使用这项工作中提出的两种不同算法之一进行的。这两种算法都利用了使用凸优化的多个相干测量的组合,并利用了缺陷/不均匀性的稀疏性,这是大多数无损检测场景的典型特征。最后,根据重构质量和算法复杂度对各算法的性能进行评分。所提出的实验方法基于高功率激光器的重复空间结构加热。因此,可以得到二维稀疏缺陷/不均匀性图。此外,将获得的结果与使用均匀照明的传统热成像检测方法的结果进行了比较。由于重建的缺陷/不均匀性图的稀疏性,这种比较是定性的。(c) 2022 年作者。除非另有说明,否则所有文章内容均根据知识共享署名 (CC BY) 许可 (http://creativecommons.org/licenses/by/4.0/) 进行许可。

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