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NDTE using pulse thermography: Numerical modeling of composite subsurface defects

机译:使用脉冲热成像的NDTE:复合表面缺陷的数值模拟

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摘要

The ability to predict subsurface defect information in composite materials through a non-invasive, efficient inspection protocol is fast becoming a vital research area. In numerically modeling the thermographic process associated with an infrared (IR) technique we can afford inspectors the ability to predict subsurface defect information associated with a specific material configuration. The research involved in this study looks specifically at the finite element modeling (FEM) of delaminations in a composite flat plate setup. To date the modeling of delaminations has been restricted to only two dimensional (2D) numerical representations and associated primarily with rear faced detection. The results of this research, however, clearly show that the rear faced detection technique has limitations in defect depth prediction and the 2D approximation associated with this technique ignores a paramount effect in the form of lateral thermal diffusion. It is also made clear that the representation of experimental flat plate models with flat bottomed holes, under pulse phase thermographic inspection, in simulating delaminations is misguided.
机译:通过无创,有效的检查方案来预测复合材料中表面缺陷信息的能力正迅速成为至关重要的研究领域。在对与红外(IR)技术相关的热成像过程进行数值建模时,我们可以为检查人员提供预测与特定材料配置相关的表面缺陷信息的能力。这项研究涉及的研究专门针对复合平板装置中分层的有限元建模(FEM)。迄今为止,分层的建模仅限于二维(2D)数值表示,并且主要与背面检测相关。然而,这项研究的结果清楚地表明,背面检测技术在缺陷深度预测方面存在局限性,并且与该技术相关的2D近似忽略了横向热扩散形式的最重要的影响。同样清楚的是,在脉冲相热成像检查中模拟分层时,带有平底孔的实验平板模型的表示是错误的。

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