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Quantitative evaluation of corrosion by a digital fringe projection technique

机译:通过数字条纹投影技术对腐蚀进行定量评估

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摘要

A novel digital fringe projection (DFP) technique has been developed for the detection and quantitative evaluation of corrosion on engineering structures. DFP detects and evaluates corrosion by measuring surface topographical changes caused by corrosion. By using a novel digital projection display technology, the technique provides the capability of digitally projecting fringe patterns with extremely high brightness and contrast ratio. Fringe patterns are created by software, which allows for instant changes of intensity profile, phase, and spacing. Digitally accurate, software-based phase shifting technique is employed to significantly improve measurement resolution. Phase wrapping and unwrapping are done automatically by a specially developed software. With a high-resolution CCD camera, a total of 4 million surface contour data are generated for each specimen measured. This technique has the potential of providing rapid on-site inspection and evaluation of corrosion on large structures. Experimental results on various corrosion specimens are presented and discussed.
机译:已经开发了一种新颖的数字条纹投影(DFP)技术,用于检测和定量评估工程结构上的腐蚀。 DFP通过测量由腐蚀引起的表面形貌变化来检测和评估腐蚀。通过使用新颖的数字投影显示技术,该技术提供了数字投影具有极高亮度和对比度的条纹图案的能力。边缘图案是由软件创建的,该软件可即时更改强度分布,相位和间距。采用数字精确,基于软件的相移技术可显着提高测量分辨率。相位包裹和解缠是由专门开发的软件自动完成的。使用高分辨率CCD相机,每个被测样品共生成400万个表面轮廓数据。该技术具有提供快速现场检查和评估大型结构腐蚀的潜力。介绍并讨论了在各种腐蚀样品上的实验结果。

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