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Observation of drying process of multilayered paint using fOCT based on dynamic speckles

机译:基于动态斑点的fOCT多层涂料干燥过程的观察

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Recently, a demand for the precise observation of a multilayered paint system have been increasing such as in car industry. However, conventional methods can observe only the surface condition of the paint. In this study, we propose a new method to observe a three dimensional drying process of the multilayered paint using functional Optical Coherence Tomography (fOCT). In this method, the dynamic speckles that appear in OCT signal were utilized. The temporal properties of the dynamic speckle is related to the Brownian motion of the scattering particles in the paint, and thus depends on the drying condition. Autocorrelation function of the speckle signal was calculated and its width,i.e., correlation length (CL), was used as a measure. In the experiment, two layer system consisting of different paints on the thin glass plate, and the drying process was observed for two hours. In the second layer exposed to the air, CL showed a monotonic increment indicating a steady progress of the drying process while in the first layer (deeper layer), CL decreased slightly for the first 50min. and then started to increase. This implies that drying process has been reversed due to the transport of the solvent from the second layer in the early stage. Such a complicated drying process of the multilayer system could also be confirmed from OCT signal image of the interface between the layers. This analysis was performed using the phase term obtained in the OCT interference signal with an accuracy of 0.1 μm.
机译:近来,例如在汽车工业中,对多层涂料系统的精确观察的需求不断增长。但是,常规方法只能观察涂料的表面状况。在这项研究中,我们提出了一种使用功能性光学相干断层扫描(fOCT)观察多层涂料的三维干燥过程的新方法。在这种方法中,利用了出现在OCT信号中的动态斑点。动态斑点的时间特性与涂料中散射粒子的布朗运动有关,因此取决于干燥条件。计算散斑信号的自相关函数,并将其宽度即相关长度(CL)用作度量。在实验中,两层系统由薄玻璃板上的不同涂料组成,并且在干燥过程中观察了两个小时。在暴露于空气的第二层中,CL显示单调递增,表明干燥过程稳步进行,而在第一层(更深层)中,CL在开始的50分钟内略有下降。然后开始增加。这意味着由于在早期阶段溶剂从第二层的输送,干燥过程已经逆转。还可以从层之间的界面的OCT信号图像确认多层系统的这种复杂的干燥过程。使用在OCT干扰信号中获得的相位项进行精度为0.1μm的分析。

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