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Modeling 3D heat flow interaction with defects in composite materials for infrared thermography

机译:对复合材料中的缺陷进行3D热流相互作用建模以进行红外热成像

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摘要

Estimation of defect depth and size is an important problem in the domain of Nondestructive Testing in order to perform corrective repairs. The problem of defect depth estimation using Infrared Thermography has been previously studied using 1D heat conduction models. Unfortunately, 1D heat conduction based models are generally inadequate in predicting heat flow around finite-sized defects, especially in composite structures. In this study, a novel approach based on 3D heat conduction is proposed to model the heat flow interaction with the defect in quasi-isotropic composite materials. The modeling process involved coordinate transformations to reduce the anisotropic heat conduction problem to the isotropic domain, followed by separation of variables to solve the partial differential equation of the heat conduction. The validity of the model is established using Pulsed Thermography experiments performed on a composite panel containing rectangular flat-bottom holes of different sizes, present at different depths.
机译:缺陷深度和尺寸的估计是非破坏性测试领域中的一个重要问题,目的在于进行纠正性修复。先前已经使用一维热传导模型研究了使用红外热成像法估计缺陷深度的问题。不幸的是,基于一维热传导的模型通常不足以预测有限尺寸缺陷周围的热流,特别是在复合结构中。在这项研究中,提出了一种基于3D导热的新颖方法来模拟准各向同性复合材料中的热流与缺陷的相互作用。建模过程涉及坐标转换以将各向异性导热问题减少到各向同性域,然后分离变量以求解导热的偏微分方程。该模型的有效性是通过在包含不同深度,不同深度的矩形平底孔的复合面板上执行的脉冲热成像实验确定的。

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