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Structural noise reduction in frequency modulated thermal wave imaging of carbon fibre composite materials

机译:碳纤维复合材料频率调制热波成像的结构降噪

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Frequency modulated thermography is becoming a popular thermal non-destructive testing (TNDT) technique which like other active thermographic techniques, requires an external heating stimulus, preferably on a blackened surface. It is however, not immune to non-ideal situation like non-uniform heating and surface emissivity variation. The phase image helps to reduce the effect of surface emissivity variation to some extent, but is inadequate in case of large variations. Further, structural noise can significantly interfere with the process of defect detection, as in the case of carbon fibre composite materials. This paper proposes two image reconstruction algorithms for off-line reduction of structural noise. The first utilizes the periodic nature of structural noise if present, and removes it using 2-dimensional Fourier transformation and a spatial band-stop filter. The other uses time serial reconstruction algorithm to remove such noise. The latter was originally proposed by the authors to remove artifacts from surface emissivity variation on metallic samples. The performances of both algorithms are successfully demonstrated on a carbon fibre test piece, having 2 mm, 4 mm, and 6 mm diameter back drilled holes at various depths ranging from 0.25 mm to 2 mm in steps of 0.25 mm.
机译:频率调制的热成像正在成为一种像其他活性热成像技术一种流行的热非破坏性测试(TNDT)技术,需要外部加热的刺激,优选在黑化处理表面。它是,但是不能避免像的非均匀加热和表面辐射的变化的非理想的情况。相位图像有助于减少在一定程度上表面辐射变化的影响,但在大的变化的情况下不充分。此外,结构可以噪声与显著缺陷检测的过程干扰,如在碳纤维复合材料的情况下。本文提出了一种离线还原结构噪声的两种图象重建算法。第一利用结构性噪声的周期性性质(如果存在)和删除使用2维傅里叶变换和空间带阻滤波器它。的其他用途时间串行重建算法以去除这种噪声。后者最初是由作者提出,以除去从金属样品表面辐射率变化的伪像。两种算法的性能被成功地证明在碳纤维的试验片,具有2毫米,4毫米,和6毫米直径的背面钻孔不同深度的范围从0.25mm至2mm的为0.25mm的孔的步骤。

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