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MODELING HEAT FLOW INTERACTION WITH DEFECTS IN COMPOSITE MATERIALS USING VIRTUAL HEAT SOURCES IN PULSED THERMOGRAPHY

机译:利用脉冲热成像中的虚拟热源模拟复合材料中缺陷的热流相互作用

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Quantitative defect detection in composite structures is an important problem as the aerospace and wind energy industries are increasingly using composites due to their attractive properties. Newer aircraft contain over 50% composites, while the wind turbine blades contain over 95% composites. Quantitative estimation of defect parameters is relevant to perform repairs and assess the integrity of these structures. Previous studies are based on simple 1D heat conduction models, which are inadequate in predicting heat flow around defects, especially in composites where the ratio of longitudinal to transverse thermal conductivity is about 100. In this study, a novel heat conduction model is proposed to model heat flow around defects accounting for 3D heat conduction in quasi-isotropic composites. The validity of the proposed methodology is established using experiments performed on a CFRP panel containing defects of different dimensions at different depths. The inverse problem could be used to quantitatively determine the defect depth and size.
机译:在复合结构中进行定量缺陷检测是一个重要的问题,因为航空航天和风能行业由于其吸引人的特性而越来越多地使用复合材料。新型飞机包含超过50%的复合材料,而风力涡轮机叶片包含超过95%的复合材料。缺陷参数的定量估计与进行维修和评估这些结构的完整性有关。先前的研究基于简单的一维导热模型,该模型不足以预测缺陷周围的热流,特别是在纵向和横向导热率之比约为100的复合材料中。在本研究中,提出了一种新颖的导热模型来进行建模缺陷周围的热流导致准各向同性复合材料的3D热传导。所提出方法的有效性是通过在CFRP面板上进行的实验确定的,该面板包含在不同深度处具有不同尺寸的缺陷。反问题可以用来定量确定缺陷的深度和大小。

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