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Diffusion and separation mechanism of transient electromagnetic and thermal fields

机译:瞬变电磁场和热场的扩散和分离机理

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摘要

Electromagnetic mechanism of Joule heating and thermal diffusion has considerable impacts on eddy current pulsed thermography (ECPT). Since ECPT is a multi-physics non-destructive testing (NDT) method depended on both transient electromagnetic and thermal fields, it is crucial to analyze the characteristic of heat propagation mechanism, characteristic time of diffusion as well as the separation of electromagnetic-thermal field for improving detection sensitivity and quantitative analysis. Deep inside to electromagnetic energy, this research constructs a physical-mathematical time-dependent partition model to analyze the whole thermal transient process and consider characteristic times for separating Joule heating and thermal diffusion into four different stage. This study sheds light not only on the deeper understanding of physical mechanism of inductive heating propagation but also on the better modeling and mining of mathematical time-spatial pattern in quantitative defects detection for NDT. Finally, numerical modeling and experiments have been conducted on both artificial slot of steel sample and natural edge crack on the turbine blade sample to validate the proposed study. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:焦耳加热和热扩散的电磁机制对涡流脉冲热像仪(ECPT)有很大影响。由于ECPT是一种同时依赖于瞬变电磁场和热场的多物理场无损检测(NDT)方法,因此分析传热机制的特性,扩散的特征时间以及电磁热场的分离至关重要。用于提高检测灵敏度和定量分析。深入研究电磁能,本研究构建了一个物理-数学时间相关的分配模型,以分析整个热瞬态过程,并考虑将焦耳热和热扩散分为四个不同阶段的特征时间。这项研究不仅为更深入地了解感应加热传播的物理机制提供了启示,而且为更好地建模和挖掘NDT定量缺陷检测中的数学时空模式提供了启示。最后,对钢样本的人工缝隙和涡轮叶片样本的自然边缘裂纹进行了数值建模和实验,以验证所提出的研究。 (C)2015 Elsevier Masson SAS。版权所有。

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