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Eddy Current Pulsed Thermography for Steel Corrosion Characterization

机译:涡流脉冲热成像,用于钢腐蚀特征

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Corrosion has been perceived as a terribly damaging problem for steel. This work introduces eddy current pulsed thermography (ECPT) with fast, contactless, and high-precision detection for steel corrosion characterization. In this process, time-domain features of transient thermal responses (TTRs) are extracted to characterize corrosion on Q235 steel specimen. The effect of peak-value (PV), peak-time (PT), the first derivative peak value (FDPV) and the first derivative peak time (FDPT) is emphasized for describing corrosion characterization and improving the detection precision of the obtained features as detection criterion of corrosion characterization. Experimental investigations have related to verify the availability of the characteristics extracted. New sets of thermal images have been constructed according these time-domain features. Image fusion based on wavelet transform is also applied to obtain an image combines advantages of these time-domain features. It can be conducted that the time-domain features imaging takes care of corrosion characterization visually. Above all, the practical results indicate that it is feasible to employ ECPT method on the nondestructive detection of steel corrosion characterization.
机译:腐蚀被认为是钢铁的一个非常有破坏性问题。这项工作引入了涡流脉冲热成像(ECPT),具有快速,非接触和高精度检测钢腐蚀特性。在该过程中,提取瞬态热响应(TTRS)的时域特征,以表征Q235钢标本上的腐蚀。峰值(PV),峰值时间(PT),第一导数峰值(FDPV)和第一导数峰值时间(FDPT)的效果被强调用于描述腐蚀表征并提高所获得的特征的检测精度腐蚀特征的检测标准。实验调查有关,验证了提取的特征的可用性。根据这些时域特征构建了新的热图像集。基于小波变换的图像融合也应用于获得图像组合这些时间域特征的优点。可以进行时域特征成像在视觉上照顾腐蚀表征。最重要的是,实际结果表明,采用ECPT方法对钢腐蚀特征的非破坏性检测是可行的。

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