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首页> 外文期刊>Infrared physics and technology >Three-dimensional subsurface defect shape reconstruction and visualisation by pulsed thermography
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Three-dimensional subsurface defect shape reconstruction and visualisation by pulsed thermography

机译:脉冲热成像三维地下缺陷形状重构和可视化

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摘要

Defects detected by most thermographic inspection are represented in the form of 2D image, which might limit the understanding of where the defects initiate and how they grow over time. This paper introduces a novel technique to rapidly estimate the defect depth and thickness simultaneously based on one single-side inspection. For the first time, defects are reconstructed and visualised in the form of a 3D image using cost-effective and rapid pulsed thermography technology. The feasibility and effectiveness of the proposed solution is demonstrated through inspecting a composite specimen and a steel specimen with semi-closed airgaps. For the composite specimen, this technique can deliver comparatively low averaged percentage error of the estimated total 3D defect volume of less than 10%.
机译:大多数热敏检查检测的缺陷以2D图像的形式表示,这可能会限制对缺陷发起的位置以及它们随时间的发展方式的理解。 本文介绍了一种基于一个单侧检查的快速估计缺陷深度和厚度的新技术。 首次,使用经济高效脉冲热成像技术以3D图像的形式重建和可视化缺陷。 通过检查复合试样和具有半封闭式气隙的钢样品来证明所提出的解决方案的可行性和有效性。 对于复合标本,该技术可以提供比较低的平均百分比误差估计的总3D缺陷体积小于10%。

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