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Ferrite-yoke based pulsed induction thermography for cracks quantitative evaluation

机译:基于铁氧体磁轭的脉冲感应热成像技术对裂纹的定量评估

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This paper proposes a new ferrite-yoke based pulsed induction thermography (PIT) for cracks visualization and quantitative evaluation. The proposed approach combines the advantages of both alternating current field measurement (ACFM) and eddy current pulsed thermography (ECPT) in physical level. It can produce relative uniform heating in surface and subsurface of ferromagnetic material and have an open-view for infrared imaging. The structure and physical mechanism of the ferrite-yoke based PIT are introduced. Numerical simulations are conducted to understand the general behavior and multi-physical interactions of the proposed method with stimulated magnetic flux, eddy current and induced heating in samples. Experiments are implemented to verify simulation results and identify the characteristics of the proposed method for characterization of the artificial and natural cracks. Results demonstrate the advantages of the proposed method on cracks quantitative evaluation in terms of combined magnetic flux and eddy current heating to defect orientations, uniform inductive stimulation and open-view for cracks visualization. The proposed method greatly enhances the capability for cracks detection and quantitative evaluation compared with previous induction coils.
机译:本文提出了一种新的基于铁氧体磁轭的脉冲感应热成像技术(PIT),用于裂纹的可视化和定量评估。所提出的方法在物理层面结合了交流场测量(ACFM)和涡流脉冲热成像(ECPT)的优势。它可以在铁磁材料的表面和亚表面产生相对均匀的加热,并具有用于红外成像的开阔视野。介绍了基于铁氧体磁轭的PIT的结构和物理机理。进行了数值模拟,以了解该方法在受激磁通量,涡流和感应加热下的一般行为和多种物理相互作用。进行实验以验证仿真结果并确定所提出的方法来表征人造裂缝和天然裂缝。结果证明了该方法在裂纹定量评估方面的优势,包括结合磁通量和涡流加热至缺陷方向,均匀的感应激励和用于裂纹可视化的开放视野。与以前的感应线圈相比,该方法大大提高了裂纹检测和定量评估的能力。

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